Ma¡¦s Publication

2024

1.           ¡§High performance photodetectors based on In2S3, In2S1.5Se1.5 and In2Se3 nanostructures¡¨ A. J. Khimani, S. A. Kadam, R. K. Giri, C. K. Zankat, Y.-R. Ma (2024) Mater. Adv. doi: 10.1039/d3ma00808h.

2.             ¡§Exploiting the capabilities of MoS2-WO3 heterojunction sensors for harmful NO2 gas detection at low temperature¡¨ G. M. Hingangavkar, S. A. Kadam, Y.-R. Ma, M. Selvaraj, K. Ali Khan, Ramesh N. Mulik, V. B. Partil (2024) Ceram. Int. 50, 16051-16063.

3.             ¡§Microporous £\-Fe2O3@NiO heterostructures synthesized for enhanced supercapacitor performance¡¨ S. A. Kadam, K. P. Kadam, C. C. S. Maria, Y.-R. Ma*, A. C. Molane, S. A. Lolage, V. B. Patil, P. D. More* (2024) ChemistrySelect 9, e202302376.

4.             ¡§Impact of Co:Fe cations composition in amorphous and mesoporous cobalt iron phosphate electrocatalysts synthesized by SILAR method on durable electrochemical water splitting¡¨ S. A. Khalate, S. A. Kadam, Y.-R. Ma, S. S. Kumbhar, S. B. Bhosale, V. V. Patil, V. G. Parale, S. B. Kulkarni, C. D. Lokhande, H. H. Park, U. M. Patil (2024) Int. J. Hydrog. Energy 61, 162-172.

5.             ¡§Enhancing the hydrogen evolution performance of tungsten diphosphide on carbon fiber through ruthenium modification¡¨ L. Saravanan, P. Anand, Y.-P. Fu, Y.-R. Ma, W.-C. Yeh (2024) ACS Appl. Mater. Interfaces 16, 12407-12416.

6.             ¡§Ultra-responsive and highly sensitive 1D ZnO nanotubes for detecting perilous low levels of NO2 gas¡¨ P. R. Godse, S. A. Kadam*, T. M. Nimbalkar, Y. M. Jadhav, Y. B. Jadhao, Y.-R. Ma, V. B. Patil* (2024) Mater. Adv. 5, 2826-2840.

7.             ¡§Recent progress in transition metal nitride electrodes for supercapacitor, water splitting, and battery applications¡¨ S. A. Kadam*, L. M. Jose, N. S. George, S. Sreehari, D. A. Nayana, D. V. Pham, K. P. Kadam, A. Aravind*, Y.-R. Ma* (2024) J. Alloys Compd. 976, 173083.

8.             ¡§Unveiling the synergistic interplay of appropriate oxygen vacancies and S-scheme heterojunction structures in OVs-TiO2/g-C3N4 catalyst for efficient RhB photodegradation and H2 production¡¨ V. H. Huong*, T. T. Loan, K.-P. Pham, M. N. Ha, Q. H. Nguyen, Y.-R. Ma, A. B. Ngac, V.-C. Nguyen (2024) J. Alloys Compd. 972, 172722.

9.             ¡§On the behavior of MoS2-rGO nanocomposites for chemiresistive H2S detection at room temperature¡¨ G. M. Hingangavkar, S. A. Kadam, Y.-R. Ma, M. Selvaraj, R. N. Mulik, V. B. Patil (2024) Sens. Actuators B-Chem. 399, 134843.

2023

10.         ¡§Tailored formation of WO3-rGO nanohybrids for dependable low temperature NO2 sensing¡¨ G. M. Hingangavkar, S. A. Kadam, Y.-R. Ma, S. S. Bandgar, R. N. Mulik, V. B. Patil* (2023) Ceram. Int. 49, 38866-38876.

11.         ¡§Efficient van der Waals layered gallium telluride-based passive photodetectors for low-power-density sensing of visible light¡¨ C. C. S. Maria, P.-H. Wu, D. P. Hasibuan, C. S. Saragih, H. Giap, D. H. Nguyen, Y.-R. Chen, R. A. Patil, D. V. Pham, J.-L. Shen, C.-C. Lai, M.-K. Wu, Y.-R. Ma* (2023) J. Mater. Chem. C, 11, 14316-14325.

12.         ¡§On-chip monolithically integrated ultraviolet low-threshold plasmonic metal-semiconductor heterojunction nanolasers¡¨ J.-Y. Sun, D. H. Nguyen, J.-M. Liu, C.-Y. Lo, Y.-R. Ma, Y.-J. Chen, J.-Y. Yi, J.-Z. Huang, H. Giap, H. Y. T. Nguyen, C.-D. Liao, M.-Y. Lin, C.-C. Lai* (2023) Adv. Sci. 2301493.

13.         ¡§MoS2-GO hybrid sensor: A discerning approach for detecting harmful H2S gas at room temperature¡¨ G. M. Hingangavkar, S. A. Kadam, Y.-R. Ma, S. S. Bandgar, R. N. Mulik, V. B. Patil* (2023) Chem. Eng. J. 472, 144789.

14.         ¡§A comprehensive review on transition metal nitrides electrode materials for supercapacitor: Syntheses, electronic structure engineering, present perspectives and future aspects¡¨ S. A. Kadam*, R. S. Kate, V. M. Peheliwa, S. A. Shingate, C. C. S. Maria, Y.-R. Ma* (2023) J. Energy Storage 72, 108229.

15.         ¡§Layer-dependent optical modulation and field-effect-transistor in two-dimensional 4H-SnS2 layers¡¨ V. M. Peheliwa, K.-C. Lu, D. P. Hasibuan, C. S. Saragih, C. C. S. Maria, Y.-R. Chen, R. A. Patil, C.-C. Lai, W.-B. Jian, M.-K. Wu, Y.-R. Ma* (2023) Adv. Opt. Mater. 11, 00395.

16.         ¡§A S-scheme heterojunction Fe-doped TiO2/SnO2 with rich oxygen vacancies for photo-Fenton degradation of Rhodamine B under visible light illumination¡¨ V. H. Huong*, V.-C. Nguyen, M. N. Ha, D. V. Pham, T. B. Nguyen, Y.-R. Ma, A. B. Ngac, T. T. Loan (2023) Opt. Mater 140, 113864.

17.         ¡§Efficient MoS2/V2O5 electrocatalyst for enhanced oxygen and hydrogen evolution reactions¡¨ K. K. Haldar*, I. Ahmed, R. Biswas, S. Mete, R. A. Patil, Y.-R. Ma (2023) Electrocatal. 14, 624-635.

18.         ¡§Hierarchical 2D MnO2@1D mesoporous NiTiO3 core-shell hybrid structures for high-performance supercapattery electrodes: Theoretical and experimental investigations¡¨ N. Kitchamsetti, M. Samtham, D. Singh, E. Choudhary, S. R. Rondiya, Y.-R. Ma, R. W. Cross, N. Y. Dzade, R. S. Devan* (2023) J. Electroanal. Chem. 936, 117359.

19.         ¡§Diffusionassisted metallic invasion into graphene oxide layer in metal/graphene oxide/metal structures¡¨ P. Saini, M. Singh, R. Patil, Y.R. Ma, R. P. Tandon, S. P. Singh, A. K. Mahapatro* (2023) J. Mater. Res. 38, 1832-1842.

20.         ¡§Inquest on photocatalytic and antibacterial traits of low composition Cu doped ZnO nanoparticles¡¨ N. S. George, S. A. Kadam, S. Sreehari, L. M. Jose, Y.-R. Ma, A. Aravind* (2023) Chem. Phys. Lett. 815, 140351.

21.         ¡§Dielectric behavior and phase transition of La2Mo2O9 films synthesized by spray pyrolysis technique¡¨ G. A. A. Kadam, S. A. A. Patil, B. B. B. Patil, S. S. S. Kumbhar, S. S. S. Kumbhar, S. B. B. Madake, L. D. D. Kadam, Y.-R. Ma, S. A. A. Kadam, R. K. K. Nimat* (2023) J. Mater. Sci.-Mater. Electron. 34, 143.

22.         ¡§Highly selective and sensitive MoS2 nano-sensor for H2S detection¡¨ G. M. Hingangavkar, S. A. Kadam, Y.-R. Ma, R. N. Mulik, V. B. Patil* (2023) J. Alloys Compd. 941, 168849.

23.         ¡§Nanoparticulate films of WO3 and MoO3 composites for enhancing UV light electrochromic transmittance variation and energy storage applications¡¨ C.-C. Wei, T.-H. Wu, J.-W. Huang, B.-L. Young, W.-B. Jian*, Y.-L. Lin, J.-T. Chen, C.-S. Hsu, Y.-R. Ma, K. Tsukagoshi (2023) Electrochim. Acta, 442, 141897.

24.         ¡§Insight into the adsorption, photocatalytic and magnetic properties of bandgap tailored hydrothermally grown SnO2:Ni/Cu nanostructures¡¨ L. M. Jose, N. S. George, S. A. Kadam*, A. Aravind*, Y.-R. Ma, Y.-R. Chen (2023) Opt. Mater. 135, 113348.

25.         ¡§Coupling nonstoichiometric Zn0.76Co0.24S with NiCo2S4 composite nanoflowers for efficient synergistic electrocatalytic oxygen and hydrogen evolution reactions¡¨ R. Biwas, P. Thakur, I. Ahmed, T. Ram, M. S. Ali, R. A. Patil, B. Kumar, S. Som, D. Chopra, A. K. Paul, Y.-R. Ma, K. K. Haldar* (2023) Energy Fuels 37, 604-613.

26.         ¡§Mn-incorporated alpha-Fe2O3 nanostructured thin films: facile synthesis and application as a high-performance supercapacitor¡¨ S. A. Kadam, Y.-R. Ma, Y.-R. Chen, Y. H. Navale, A. S. Salunkhe, V. B. Patil, S. D. Ralegankar, P. D. More* (2023) J. Electron. Mater. 52, 500-513.

27.         ¡§Intercalation of two-dimensional graphene oxide in WO3 nanoflowers for NO2 sensing¡¨ G. M. Hingangavkar, S. A. Kadam, Y.-R. Ma, S. D. Sartale, R. N. Mulik, V. B. Patil (2023) Nano-Struct. Nano-Objects 34, 100964.

2022

28.         ¡§A binder-free facile synthetic approach for amorphous, hydrous nickel copper phosphate thin film electrode preparation and its application as a highly stable cathode for hybrid asymmetric supercapacitors¡¨ S. S. Pujari, S. A. Kadam, Y.-R. Ma, S. B. Jadhav, S. S. Kumbhar, S. B. Bhosale, V. V. Patil, J. L. Gunjakar, C. D.Lokhande, U. M. Patil* (2022) Sustain. Energy Fuels 6, 5608-5620.

29.         ¡§Mn-Incorporated £\-Fe2O3 nanostructured thin films: Facile synthesis and application as a high-performance supercapacitor¡¨ S. A. Kandam, Y.-R. Ma, Y.-R. Chen, Y. H. Navale, A. S. Salunkhe, V. B. Patil, S. D. Ralegankar, P. D. More (2022) J. Electron. Mater. 52, 500-513.

30.         ¡§Green synthesis of hybrid papain/Ni-3(PO4)(2) rods electrocatalyst for enhanced oxygen evolution reaction¡¨ I. Ahmed, R. Biswas, H. Singh, R. A. Patil, R. Varshney, D. Patra, Y.-R. Ma, K. K. Haldar* (2022) New J. Chem. 46, 22237-22245.

31.         ¡§Spray synthesized Mn-doped CuO electrodes for high performance supercapacitor¡¨ P. More, S. A. Kadam*, Y.-R. Ma, Y.-R. Chen, N. Tarwal, Y. Navale, A. Salunkhe, V. Patil* (2022) ChemistrySelect 7, e202202504.

32.         ¡§Mechanism of iron integration into LiMn1.5Ni0.5O4 for the electrocatalytic oxygen evolution reaction¡¨ I. Ahmed, R. Biswas, S. G. Dastider, H. Singh, S. Mete, R. A.Patil, M. Saha, A. K. Yadav, S. N. Jha, K. Mondal, H. Singh, Y.-R. Ma, K. K. Haldar* (2022) Energy Fuels 36, 12160-12169.

33.         ¡§Hydrothermally synthesized nickel copper phosphate thin film cathodes for high-performance hybrid supercapacitor devices,¡¨ S. S. Pujari, S. A. Kadam, Y.-R. Ma, S. B. Jadhav, S. S. Kumbhar, S. B. Bhosale, J. L. Gunjakar, C. D. Lokhande, U. M. Patil* (2022) J. Energy Storage, 52, 105037.

34.         ¡§Transmission-path dependent electron hopping transport in thin films and nanorods of NiO¡¨ F.-Y. Chuang, D. P. Hasibuan, C. S. Saragih, R. A. Patil*, C.-H. Tsai, Y. Liou, Y.-R. Ma* (2022) Surf. Interfaces 30, 101845.

35.         ¡§Stable and reversible electrochromic behaviors in anodic NiO thin films¡¨ K. H. Parmar, V. Manjunath, S. Bimli, P. R. Chikate, R. A. Patil, Y.-R. Ma, R. S. Devan* (2022) Chin. J. Phys. 77, 143-150.

36.         ¡§White-light photodetection enhancement and thin film impediment in Bi2S3 nanorods/thin-films homojunction photodetectors¡¨ C. C. S. Maria, R. A. Patil*, D. P. Hasibuan, C. S. Saragih, C.-C. Lai, Y. Liou, Y.-R. Ma* (2022) Appl. Surf. Sci. 584, 152608.

37.         ¡§Binder free cobalt iron phosphate thin films as efficient electrocatalysts for overall water splitting¡¨ S. A. Khalate, S. A. Kadam, Y.-R. Ma, S. B. Kulkarni, V. G. Parale, U. M. Patil* (2022) J. Colloid Interface Sci. 613, 720-732.

38.         ¡§Multifunctional plasmonic gold nanostars for cancer diagnostic and therapeutic applications¡¨ W. G. Pearl, E. V. Perevedentseva, A. V. Karmenyan, V. A. Khanadeev, S.-Y. Wu, Y.-R. Ma, N. G. Khlebtsov, C.-L. Cheng*, (2022) J. Biophoton. 15, e202100264.

2021

39.         ¡§Investigation of adsorption and photocatalytic behavior of manganese doped zinc oxide nanostructures¡¨ S. A. Kadam, S. A. Thomas, Y.-R. Ma*, L. M. Jose, D. Sajan, A. Aravind* (2022) Inogran. Chem. Commun. 134, 108981.

40.         ¡§Graphitic carbon nitride composites with MoO3-decorated Co3O4 nanorods as catalysts for oxygen and hydrogen evolution¡¨ I. Ahmed, R. Biswas, R. A. Patil, K. K. Halder, H. Singh, B. Banerjee, B. Kumar, Y.-R. Ma, K. K. Haldar* (2021) ACS Appl. Nano Mater. 4, 12672-12681.

41.         ¡§Photocatalytic degradation of malachite green dye using zinc sulfide nanostructures¡¨ S. A. Thomas, S. A. Kadam, Y.-R. Ma, A. Aravind* (2021) ChemistrySelect 6, 10015-10024.

42.         ¡§Reciprocating wear behavior of noncoated and polymer/composite coated AISI 316L steel: Role of surface mechanical attrition treatment¡¨ M. D. Joshi*, R. A. Patil, Y.-R. Ma, R. S. Devan, S. S. Hosmani (2021) Tribol. Trans. 64, 916-935.

43.         ¡§Doping-free bandgap tunability in Fe2O3 nanostructured films¡¨ S. A. Kadam, G. T. Phan, D. V. Pham*, R. A. Patil, C.-C. Lai, Y.-R. Chen, Y. Liou, Y.-R. Ma* (2021) Nanoscale Adv. 3, 5581-5588.

44.         ¡§Fast-switching electrochromic smart windows based on NiO-nanorods counter electrode¡¨ G. T. Phan, D. V. Pham*, R. A. Patil*, C.-H. Tsai, C.-C. Lai, W.-C. Yeh, Y. Liou, Y.-R. Ma* (2021) Sol. Energy Mater. Sol. Cells, 231, 111306.

45.         ¡§Cobalt doped iron phosphate thin film: An effective catalyst for electrochemical water splitting¡¨ S. A. Khalate, S. A. Kadam, Y.-R. Ma, S. S. Pujari, U. M. Patil* (2021) J. Alloys Compd. 885, 160914.

46.         ¡§Photocatalytic behavior of Ba(Sb/Ta)2O6 perovskite for reduction of organic pollutants: Experimental and DFT correlation¡¨ M. S. Patil, N. Kitchamsetti, S. R. Mulani, S. R. Rondiya, N. G. Deshpande, R. A. Patil, R. W. Cross, N. Y. Dzade, K. K. Sharma, P. S. Patil, Y.-R. Ma, H. K. Cho, R. S. Devan* (2021) J. Taiwan Inst. Chem. Eng. 122, 201-209.

47.         ¡§Rutile-phase TiO2@carbon core-shell nanowires and their photoactivation in visible light region¡¨ L. Saravanan, R. A. Patil, P. Gultom, B. Kumar, A. Manikandan, Y.-P. Fu, Y.-L. Chueh, C.-L. Cheng, W.-C. Yeh*, Yuan-Ron Ma* (2021) Carbon 181, 280-289.

48.         ¡§Green approach for the fabrication of Au/ZnO nanoflowers: A catalytic aspect¡¨ R. Biswas, B. Banerjee, M. Saha, I. Ahmed, S. Mete, R. A. Patil, Y.-R. Ma, K. K. Haldar* (2021) J. Phys. Chem. C 125, 6619-6631.

49.         ¡§Ultralow-threshold continuous-wave room-temperature crystal-fiber/Nanoperovskite hybrid lasers for all-optical photonic integration¡¨ D. H. Nguyen, J.-Y. Sun, C.-Y. Lo, J.-M. Liu, W.-S. Tsai, M.-H. Li, S.-J. Yang, C.-C. Lin, S.-D. Tzeng, Y.-R. Ma, M.-Y. Lin, C.-C. Lai* (2021) Adv. Mater. 33, 2006819.

50.         ¡§Fabrication of WO3 electrochromic devices using electro-exploding wire techniques and spray coating¡¨ C.-M. Chang, Y.-C. Chiang, M.-H. Cheng, S.-H. Lin, W.-B. Jian*, J.-T. Chen, Y.-J. Cheng, Y.-R. Ma, K. Tsukagoshi* (2021) Sol. Energy Mater. Sol. Cells 223, 110960.

51.         ¡§Rational design of bimetallic Au/Cu nanostructure: An efficient catalyst for methanol oxidation¡¨ R. Biswas, S. Singh, I. Ahmed, R. A. Patil, Y.-R. Ma, K. K. Haldar* (2021) ChemNanoMat 7, 158-164.

52.         ¡§Highly sensitive hydrothermally prepared nickel phosphate electrocatalyst as non-enzymatic glucose sensing electrode¡¨ S. S. Pujari, S. A. Kadam, Y.-R. Ma, S. A. Khalate, P. K. Katkar, S. J. Marje, U. M. Patil* (2021) J. Porous Mater. 28, 369-381.

2020

53.         ¡§Designing of Ag2S nanowires from a single-source molecular precursor [(PPh3)2 AgS2P((OiPr)-Pr-i)2] for hydrogen evolution reaction¡¨ S. Khirid, R. Biswas, S. Meena, R. A. Patil, Y.-R. Ma, R. S. Devan, R. S. Dhayal, K. K. Haldar (2020) ChemistrySelect 5, 10593-10598.

49.         ¡§Fabrication of mesoporous titanium dioxide using azadirachta indica leaves extract towards visible-light-driven photocatalytic dye degradation¡¨ L. Dash, R. Biswas, R. Ghosh, V. Kaur, B. Banerjee, T. Sen, R. A. Patil, Y.-R. Ma, K. K. Haldar (2020) J. Photochem. Photobiol. A: Chem. 400, 112682.

50.         ¡§Mesoporous perovskite of interlocked nickel titanate nanoparticles for efficient electrochemical supercapacitor electrode¡¨ N. Kitchamsetti, Y.-R. Ma, P. M. Shirage, R. S. Devan (2020) J. Alloys Compd. 833, 155134.

51.         ¡§Rational design of marigold-shaped composite Ni3V2O8 flowers: a promising catalyst for the oxygen evolution reaction¡¨ R. Biswas, A. Kundu, M. Saha, V. Kaur, B. Banerjee, R. S. Dhayal, R. A. Patil, Y.-R. Ma, T. Sen, K. K. Haldar (2020) New J. Chem. 44, 12256-12265.

52.         ¡§Facile synthesis of microstrip-like copper phosphatehydroxide thin films for supercapacitor applications¡¨ S. S. Pujari, S. A. Kadam, Y.-R. Ma, P. K. Katkar, S. J. Marje, S. A. Khalate, A. C. Lokhande, U. M. Patil (2020) J. Electron. Mater. 49, 3890-3901.

53.         ¡§Intriguing field-effect-transistor performance of two-dimensional layered and crystalline CrI3¡¨ R. A. Patil, H.-W. Tu, M.-H. Jen, J.-J. Lin, C.-C. Wu, C.-C. Yang, D. V. Pham, C.-H. Tsai, C.-C. Lai, Y. Liou, W.-B. Jian, Y.-R. Ma* (2020) Mater. Today Phys. 12, 100174.

2019

54.         ¡§Doping-free bandgap tuning in one-dimensional Magnéli-phase nanorods of Mo4O11 (vol 8, p 5559, 2016)¡¨ D. V. Pham, R. A. Patil, J.-H. Lin, C.-C. Lai, Y. Liou, Y.-R. Ma* (2019) Nanoscale 11, 23502.

 

55.         ¡§Perforated mesoporous NiO nanostructures for an enhanced pseudocapacitive performance with ultra-high rate capability and high energy density¡¨ N. Kitchamsetti, P. R. Chikate, R. A. Patil, Y.-R. Ma, P. M. Shirage, R. S. Devan (2019) CrystEngComm 21, 7130-7140.

56.         ¡§Hydrothermally synthesized Iron Phosphate Hydroxide thin film electrocatalyst for electrochemical water splitting¡¨ S. A. Khalate, S. A. Kadam, Y.-R. Ma, S. S. Pujari, S. J. Marje, P. K. Katkar, A. C. Lokhande, U. M. Patil (2019) Electrochim. Acta 319, 118-128.

57.         ¡§Temperature-dependent ultraviolet photoluminescence in hierarchical Zn, ZnO and ZnO/Zn nanostructures¡¨ H.-S. Chou, K.-D. Yang, S.-H. Xiao, R. A. Patil, C.-C. Lai, W.-C. V. Yeh, C.-H. Ho, Y. Liou, Y.-R. Ma* (2019) Nanoscale 11, 13385-13396.

58.         ¡§An investigation on the effect of Li-ion cycling on the vertically aligned brookite TiO2 nanostructure¡¨ N. Kitchamsetti, R. S. Kalubarme, P. R. Chikate, C.-J. Park, Y.-R. Ma, P. M. Shirage, R. S. Devan (2019) ChemistrySelect 4, 6620-6626.

59.         ¡§Impact of valence-band-edge lifting on the doping-free bandgap tunability of 1D Magnéli-phase W18O49 nanorods¡¨ G. T. Phan, D. V. Pham, R. A. Patil*, C.-C. Lai, W.-C. Yeh, Y. Liou, Y.-R. Ma* (2019) Appl. Mater. Today 15, 605-613.

2018

60.         ¡§Controlled surface/interface structure and spin enabled superior properties and biocompatibility of cobalt ferrite nanoparticles¡¨ S. M. Ansari, B. B. Sinha, K. R. Pai, S. K. Bhat, Y.-R. Ma, D. Sen, Y. D. Kolekar, C. V. Ramana (2018) Appl. Surf. Sci. 459, 788-801.

61.         ¡§Enhancing the efficiency of quasi-solid-state dye-sensitized solar cells by adding bis(trifluoromethane)sulfonimide lithium salt and camphorsulfonic acid to gel-based electrolytes¡¨ C.-H. Tsai, Y.-L. Chen, H.-L. Hsu, Y.-R. Ma, S. Mou (2018) Mater. Res. Bulletin 107, 87-93.

62.         ¡§Reductive-co-precipitated cellulose immobilized zerovalent iron nanoparticles in ionic liquid/water for Cr(VI) adsorption¡¨ A. K. Sharma, R. S. Devan, M. Arora, R. Kumar, Y.-R. Ma, J. N. Babu (2018) Cellulose 25, 5259-5275.

63.         ¡§Controlled heteroarchitectures of Aunanoparticlesdecorated ZnO nanowires for enhanced field electron emission displays¡¨ P. R. Chikate, K. D. Daware, D. S. Gavhane, Y.-R. Ma, R. J. Choudhary, S. I. Patil, M. A. More, D. M. Phase, S. W. Gosavi, P. M. Shirage, R. S. Devan (2018) ChemistrySelect 3, 7891-7899.

64.         ¡§Copper-oxide/reduced graphene oxide nanocomposites catalyzed synthesis of flavanones and flavanones with triazoles hybrid molecules in one-pot: A green and sustainable approach¡¨ A. Gupta, R. Jamatia, R. A. Patil, Y.-R. Ma, A. K. Pal, (2018) ACS Omega 3, 7288-7299.

65.         ¡§Impacts of crystal phases and 3d-valence conversions on capacitive performances of one-dimensional MoO2, MoO3, and Magnéli-phase Mo4O11 nanorod-based supercapacitors¡¨ D. V. Pham, R. A. Patil, W.-C. Yeh, Y. Liou, Y.-R. Ma* (2018) Nano Energy 47, 105-111.

66.         ¡§Probing the mechanism for bipolar resistive switching in annealed graphene oxide thin films¡¨ P. Saini, M. Singh, J. Thakur, R. Patil, Y.-R. Ma, R. Tandon, S. Singh, A. Mahapatro (2018) ACS Appl. Mater. Interfaces 10, 6521-6530.

67.         ¡§Role of cobalt cations in short range antiferromagnetic Co3O4 nanoparticles: a thermal treatment approach to affecting phonon and magnetic properties¡¨ S. R. Gawali, A. C. Gandhi, S. S. Gaikwad, J. Pant, T.-S. Chan, C.-L. Cheng, Y.-R. Ma, S. Y. Wu (2018) Sci. Rep. 8, 249.

68.         ¡§Structural and electrochemical analysis of chemically synthesized microcubic architectured lead selenide thin films¡¨ T. S. Bhat, A. V. Shinde, R. S. Devan, A. M. Teli, Y.-R. Ma, J. H. Kim, P. S. Patil (2018) Appl. Phys. A-Mater. Sci. Process. 124, 34.

69.         ¡§Spitzer shaped ZnO nanostructures for enhancement of field electron emission behaviors¡¨ P. R. Chikate, P. K. Bankar, R. J. Choudhary, Y.-R. Ma, S. I. Patil, M. A. More, D. M. Phase, P. M. Shirage, R. S. Devan (2018) RSC Adv. 8, 21664-21670.

70.          ¡§Electrochemically synthesized 1D and 3D hybrid Fe3+ doped ZnSe dandelions for photoelectrochemical cell application¡¨ G. M. Lohar, S. T. Jadhav, B. P. Relekar, R. A. Patil, Y.-R. Ma, V. J. Fulari (2018) Optik 158, 53-63.

2017

71.         ¡§Preparation, characterization and catalytic application of nano-Fe3O4-DOPA-SnO2 having high TON and TOF for non-toxic and sustainable synthesis of dihydroquinazolinone derivatives¡¨ B. Dam, R. A. Patil, Y.-R. Ma, A. K. Pal (2017) New J. Chem. 41, 6553-6563.

72.         ¡§Nano-heteroarchitectures of two-dimensional MoS2@ one-dimensional brookite TiO2 nanorods: prominent electron emitters for displays¡¨ R. S. Devan, V. P. Thakare, V. V. Antad, P. R. Chikate, R. T. Khare, M. A. More, R. S. Dhayal, S. I. Patil, Y.-R. Ma, L. Schmidt-Mende (2017) ACS Omega 2, 2925-2934.

2016

73.         ¡§Impact of cuticle photoluminescence on the color morphism of a male damselfly Ischnura senegalensis (Rambur, 1842)¡¨ C.-J. Chuang*, C.-D. Liu, R. A. Patil, C.-C. Wu, Y.-C. Chang, C.-W. Peng, T.-K. Chao, J.-W. Liou, Y. Liou, Y.-R. Ma* (2016) Sci. Rep. 6, 38051.

74.         ¡§A metalloprotein inspired ruthenium complex as an efficient and reusable catalyst for selective oxidation of alcohols to their corresponding carbonyl compounds¡¨ R. Jamatia, A. Gupta, M. Mahato, R. A. Patil, Y.-R. Ma, A. K. Pal (2016) ChemistrySelect 1, 5929-5935.

75.         ¡§Ligand-driven and full-color-tunable fiber source: toward next-generation clinic fiber-endoscope tomography with cellular resolution¡¨ C.-C. Lai, C.-Y. Lo, T.-H. Hsieh, W.-S. Tsai, D. H. Nguyen, Y.-R. Ma (2016) ACS Omega 1, 552-565.

76.         ¡§Atomically smooth hybrid crystalline-core glass-clad fibers for low-loss broadband wave guiding¡¨ C.-C. Lai, C.-Y. Lo, D. H. Nguyen, J.-Z. Huang, W.-S. Tsai, Y.-R. Ma (2016) Opt. Express 24, 20089-20106.

77.         ¡§Compact nanoarchitectures of lead selenide via successive ionic layer adsorption and reaction towards optoelectronic devices¡¨ T. S. Bhat, S. A. Vanalakar, R. S. Devan, S. S Mali, S. A. Pawar, Y.-R. Ma, C. K. Hong, J. H. Kim, P. S. Patil (2016) J. Mater. Sci.: Mater. Electron. 27, 4996-5005.

78.         ¡§Impact of nanosize on supercapacitance: study of 1D nanorods and 2D thin-films of nickel oxide¡¨ R. A. Patil, C.-P. Chang, R. S. Devan, Y. Liou, Y.-R. Ma* (2016) ACS Appl. Mater. Interfaces 8, 9872-9880.

79.         ¡§Growth of boron doped hydrogenated nanocrystalline cubic silicon carbide (3C-SiC) films by hot wire-CVD¡¨ A. Pawbake, A. Mayabadi, R. Waykar, R. Kulkarni, A. Jadhavar, V. Waman, J. Parmar, S. Bhattacharyya, Y.-R. Ma, R. Devan, H. Pathan, S. Jadkar, (2016) Mater. Res. Bull. 76, 205-215.

80.         ¡§Efficient electrochromic smart windows of one-dimensional pure brookite TiO2 nanoneedles¡¨ R. A. Patil, R. S. Devan*, Y. Liou, Y.-R. Ma* (2016) Sol. Energy Mater. Sol. Cells 147, 240-245.

81.         ¡§Dielectric, complex impedance and electrical transport properties of erbium (Er3+) ion substituted nanocrystalline, cobalt-rich ferrite (Co1.1Fe1.9-xErxO4)¡¨ S. G. Kakade, Y.-R. Ma, R. S. Devan, Y. D. Kolekar, C. V. Ramana (2016) J. Phys. Chem. C 120, 5682-5693.

82.         ¡§Short range correlation length study in a single ZnO nanowire and its impact on phonon confinement¡¨ P.-H. Shih, C.-L. Cheng, Y.-R. Ma, S. Y. Wu (2016) Appl. Phys. Lett. 108, 113101.

83.         ¡§Chemically synthesized PbS nanoparticulate thin films for a rapid NO2 gas sensor¡¨ V. V. Burungale, R. S. Devan, S. A. Pawar, N. S. Harale, V. L. Patil, V. K. Rao, Y.-R. Ma, J. E. Ae, J. H. Kim, P. S. Patil (2016) Mater. Sci.-Poland 34, 204-211.

84.         ¡§Size-controllable synthesis of Bi/Bi2O3 heterojunction nanoparticles using pulsed Nd:YAG laser deposition and metal-semiconductor heterojunction-assisted photoluminescence¡¨ R. A. Patil, M.-K. Wei, P.-H. Yeh, J.-B. Liang, W.-T. Gao, J.-H. Lin, Y. Liou, Y.-R. Ma* (2016) Nanoscale 8, 3565-3571.

85.         ¡§Promising field electron emission performance of vertically aligned one dimensional (1D) brookite (beta) TiO2 nanorods¡¨R. S. Devan, Y.-R. Ma, M. A. More, R. T. Khare, V. V. Antad, R. A. Patil, V. P. Thakare, R. S. Dhayal, L. Schmidt-Mende (2016) RSC Adv. 6, 98722-98729.

86.         ¡§Terahertz spin-wave waveguides and optical magnonics in one-dimensional NiO nanorods¡¨ R. A. Patil, C.-W. Su, C.-J. Chuang, C.-C. Lai, Y. Liou, Y.-R. Ma* (2016) Nanoscale 8, 12970-12976.

87.         ¡§Highly stable supercapacitive performance of the one-dimensional (1D) brookite TiO2 nanoneedles¡¨ R. S. Devan*, Y.-R. Ma*, R. A. Patil, S.-M. Lukas (2016) RSC Adv. 6, 62218-62225.

88.         ¡§Doping-free bandgap tuning in one-dimensional Magnéli-phase nanorods of Mo4O11¡¨ D. V. Pham, R. A. Patil, J.-H. Lin, C.-C. Lai, Y. Liou, Y.-R. Ma* (2016) Nanoscale 8, 5559-5566.

2015

89.         ¡§Studies of properties of Fe3+ doped ZnSe nanoparticles and hollow spheres for photoelectrochemical cell application¡¨ G. M. Lohar, S. T. Jadhav, H. D. Dhaygude, M. V. Takale, R. A. Patil, Y.-R. Ma, M. C. Rath, V. J. Fulari (2015) J. Alloy. Compd. 653, 22-31.

90.         ¡§Photoelectrochemical cell studies of Fe2+ doped ZnSe nanorods using the potentiostatic mode of electrodeposition¡¨ G. M. Lohar, S. T. Jadhav, M. V. Takale, R. A. Patil, Y.-R. Ma, M. C. Rath, V. J. Fulari (2015) J. Colloid Interface Sci. 458, 136-146.

91.         ¡§Studies of properties of Fe2+ doped ZnSe nano-needles for photoelectrochemical cell application¡¨ G. M. Lohar, H. D. Dhaygude, R. A. Patil, Y.-R. Ma, V. J. Fulari (2015) J. Mater. Sci.: Mater. Electron. 26, 8904-8914.

92.         ¡§Optical characterization of strong UV luminescence emitted from the excitonic edge of nickel oxide nanotowers¡¨ C.-H. Ho, Y.-M. Kuo, C.-H. Chan, Y.-R. Ma (2015) Sci. Rep. 5, 15856.

93.         ¡§Electrochemical performance of potentiodynamically deposited polyaniline electrodes in ionic liquid¡¨ D. S. Patil, S. A. Pawar, S. K. Patil, P. P. Salavi, S. S. Kolekar, R. S. Devan, Y.-R. Ma, J. H. Kim, J. C. Shin, P. S. Patil (2015) J. Alloy. Compd. 646, 1089-1095.

94.         ¡§Magnetic properties of cluster glassy Ni/NiO core-shell nanoparticles: an investigation of their static and dynamic magnetization¡¨ J.-Y. Ji, P.-H. Shih, T.-S. Chan, Y.-R. Ma, S. Y. Wu (2015) Nanoscale Res. Lett. 10, 243.

95.         ¡§Photoelectrochemical solar cell based on surfactant mediated rutile TiO2 nanorods¡¨ S. A. Pawar, D. S. Patil, U. T. Pawar, R. S. Devan, M. M. Karanjkar, Y.-R. Ma, S. W. Shin, J. H. Kim, P. S. Patil (2015) J. Mater. Sci.: Mater. Electron. 26, 2595-2604.

96.         ¡§Functional nanomaterials for energy applications¡¨ R. S. Devan, Y.-R. Ma, J.-H. Kim, R. N. Bhattacharya, K. C. Ghosh (2015) J. Nanomater. 131965.

2014

97.         ¡§Characterization and density control of GaN nanodots on Si(111) by droplet epitaxy using plasma-assisted molecular beam epitaxy¡¨ I.-S. Yu, C.-P. Chang, C.-P. Yang, C.-T. Lin, Y.-R. Ma, C.-C. Chen (2014) Nanoscale Res. Lett. 9, 682.

98.         ¡§Thiocyanate functionalized ionic liquid electrolyte for photoelectrochemical study of cadmium selenide pebbles¡¨ S. A. Pawar, D. S. Patil, S. K. Patil, D. V. Awale, R. S. Devan, Y.-R. Ma, S. S. Kolekar, J.-H. Kim, P. S. Patil (2014) Electrochim. Acta 148, 310-316.

99.         ¡§Photoluminescence mechanisms of metallic Zn nanospheres, semiconducting ZnO nanoballoons, and metal-semiconductor Zn/ZnO nanospheres¡¨ J.-H. Lin, R. A. Patil, R. S. Devan, Z.-A. Liu, Y.-P. Wang, C.-H. Ho, Y. Liou, Y.-R. Ma* (2014) Sci. Rep. 4, 6967.

100.     ¡§Photoelectrochemically active surfactant free single step hydrothermal mediated titanium dioxide nanorods¡¨ T. S. Bhat, R. S. Devan, S. S. Mali, A. S. Kamble, S. A. Pawar, I. Y. Kim, Y.-R. Ma, C. K. Hong, J. H. Kim, P. S. Patil (2014) J. Mater. Sci.: Mater. Electron. 25, 4501-4511.

101.     ¡§Oxygen induced strained ZnO nanoparticles: an investigation of Raman scattering and visible photoluminescence¡¨ S. S. Gaikwad, A. C. Gandhi, S. D. Pandit, J. Pant, T.-S. Chan, C.-L. Cheng, Y.-R. Ma, S. Y. Wu (2014) J. Mater. Chem. C 2, 7264-7274.

102.     ¡§Toward single-mode active crystal fibers for next-generation high-power fiber devices¡¨ C.-C. Lai, W.-T. Gao, D. H. Nguyen, Y.-R. Ma, N.-C. Cheng, S.-C. Wang, J.-W. Tjiu, C.-M. Huang (2014) ACS Appl. Mater. Interfaces 6, 13928-13936.

103.    ¡§Polyaniline based electrodes for electrochemical supercapacitor: Synergistic effect of silver, activated carbon and polyaniline¡¨ D. S. Patil, S. A. Pawar, R. S. Devan, S. S. Mali, M. G. Gang, Y.-R. Ma, C. K. Hong, J. H. Kim, P. S. Patil (2014) J. Electroanal. Chem. 724, 21-28.

104.    ¡§Improved electrochemical performance of activated carbon/polyaniline composite electrode¡¨ D. S. Patil, S. A. Pawar, R. S. Devan, Y.-R. Ma, W. R. Bae, J. H. Kim, P. S. Patil (2014) Mater. Lett. 117, 248-251.

105.    ¡§Hydrothermal growth of photoelectrochemically active titanium dioxide cauliflower-like nanostructures¡¨ S. A. Pawar, R. S. Devan, D. S. Patil, V. V. Burungale, T. S. Bhat, S. S. Mali, S. W. Shin, J. E. Ae, C. K. Hong, Y.-R. Ma, J. H. Kim, P. S. Patil (2014) Electrochim. Acta 117, 470-479.

106.    ¡§Large-area nanoscale farmland-like surfaces of one-dimensional NbO2 nanorods with multi-growth directions: Studies on the purple-blue photoluminescence and low-field electron emissions¡¨ J.-H. Lin, R. A. Patil, M.-A. Wu, L.-G. Yu, K.-D. Liu, W.-T. Gao, R. S. Devan, C.-H. Ho, Y. Liou, Y.-R. Ma* (2014) J. Mater. Chem. C 2, 8667-8672.

2013

107.    ¡§An efficient methodology for measurement of the average electrical properties of single one-dimensional NiO nanorods¡¨ R. A. Patil, R. S. Devan, J.-H. Lin, Y. Liou, Y.-R. Ma* (2013) Sci. Rep. 3, 3070.

108.    ¡§Short-range magnon excitation in NiO nanoparticles¡¨ A. C. Gandi, J. Pant, S. D. Pandit, S. K. Dalimbkar, T.-S. Chan, C.-L. Cheng, Y.-R. Ma, S. Y. Wu (2013) J. Phys. Chem. C 117, 18666-18674.

109.    ¡§Growth of multifunctional ZnO thin films by spray pyrolysis technique¡¨ N. L. Tarwal, A. V. Rajgure, A. I. Inamdar, R. S. Devan, I. Y. Kim, S. S. Suryavanshi, Y.-R. Ma, J.-H. Kim, P.S. Patil, (2013) Sens. Actuator A-Phys. 199, 67-73.

110.    ¡§Electrochemical supercapacitor electrode material based onpolyacrylic acid/polypyrrole/silver composite¡¨ D. S. Patil, S. A. Pawar, R. S. Devan, M. G. Gang, Y.-R. Ma, J. H. Kim, P. S. Patil (2013) Electrochim. Acta 105, 569-577.

111.    ¡§Effect of aluminium and copper acetylacetonate on physicochemical properties of tetraethoxysilane based silica aerogels¡¨ V. G. Parale, D. B. Mahadik, M. S. Kavale, A. V. Rao, R. A. Patil, Y.-R. Ma, S. Mullens, R. S. Vhatkar (2013) J. Porous Mater. 20, 563-570.

112.    ¡§Improved solar cell performance of chemosynthesized cadmium selenide pebbles¡¨ S. A. Pawara, R. S. Devanb, D. S. Patil, A. V. Moholkara, M. G. Gang, Y.-R. Ma, J. H. Kim, P. S. Patil (2013) Electrochim. Acta 98, 244-254.

113.    ¡§Efficient electrochromic properties of high-density and large-area arrays of one-dimensional NiO nanorods¡¨ R. A. Patil, R. S. Devan, J.-H. Lin, Y.-R. Ma*, P. S. Patil, Y. Liou (2013) Sol. Energy Mater. Sol. Cells. 112, 91-96.

114.     ¡§Effective light harvesting in CdS nanoparticle-sensitized rutile TiO2 microspheres¡¨ S. S. Malia, R. S. Devan, Y.-R. Ma, C. A. Betty, P. N. Bhosale, R. P. Panmand, B. B. Kale, S. R. Jadkar, P. S. Patil, J.-H. Kim, C. K. Hong (2013) Electrochim. Acta 90, 666-672.

115.    ¡§Nanoscale dynamic behavior of surface magnetic domains on a La0.7Sr0.3MnO3 thin film¡¨ J.-H. Lin, Y.-R. Lin, T.-K. Wen, R. S. Devan, Y. Liou, Y.-R. Ma* (2013) J. Nanosci. Nanotechnol. 13, 888-893.

116.    ¡§Effective photoluminescence in a large-area array of Ta2O5 nanodots¡¨ R. S. Devan, C.-L. Lin, J.-H. Lin, T.-K. Wen, R. A. Patil, Y.-R. Ma* (2012) J. Nanosci. Nanotechnol. 13, 1001-1005.

117.    ¡§Electrical and chemical characteristics of probe-induced two-dimensional SiOx protrusion layers¡¨ J.-H. Lin, H.-C. Chiu, Y.-R. Lin, T.-K. Wen, R. A. Patil, R. S. Devan, C.-H. Chen, H.-W. Shiu, Y. Liou, Y.-R. Ma* (2013) Appl. Phys. Lett. 102, 031603.

118.    ¡§Efficient electrochromic performance of nanoparticulate WO3 thin films¡¨ D. S. Dalavi, R. S. Devan, R. A. Patil, R. S. Patil, Y.-R. Ma, S. B. Sadale, I.Y. Kim, J.-H. Kim, P. S. Patil (2013) J. Mater. Chem. C 1, 3722-3728.

119.    ¡§Electrochromic properties of dandelion flower like nickel oxide thin films¡¨ D. S. Dalavi, R. S. Devan, R. S. Patil, Y.-R. Ma, M.-G. Kang, J.-H. Kim, P. S. Patil (2013) J. Mater. Chem. A 1, 1035-1039.

120.    ¡§Electrochromic performance of sol-gel deposited NiO thin film¡¨ D. S. Dalavi, R. S. Devan, R. S. Patil, Y.-R. Ma, P. S. Patil (2013) Mater. Lett. 90, 60-63.

2012

121.     ¡§One-dimensional metal-oxide nanostructures: Recent developments in synthesis, characteristics and applications¡¨ R. S. Devan, R. A. Patil, J.-H. Lin, Y.-R. Ma* (2012) Adv. Funct. Mater. 22, 3326-2270.

122.     ¡§Spray deposited localized surface plasmonic Au-ZnO nanocomposites for solar cell application¡¨ N. L. Tarwal, R. S. Devan, Y.-R. Ma, P. S. Patil, M. M. Karanjkar, P. S. Patil (2012) Electrochim. Acta 72, 32-39.

123.     ¡§Tuning the dimensionality of ZnO nanowires through thermal treatment: An investigation of growth mechanism¡¨ P.-H. Shih, H.-J. Hung, Y.-R. Ma, S.-Y. Wu (2012) Nanoscale Res. Lett. 7, 354.

124.     ¡§Novel synthesis of kesterite Cu2ZnSnS4 nanoflakes by successive ionic layer adsorption and reaction technique: Characterization and application¡¨ S. S. Mali, Bharmana M. Patil, C. A. Betty, P. N. Bhosale, Y. W. Oh, S. R. Jadkare, R. S. Devan, Y.-R. Ma, P. S. Patil (2012) Electrochim. Acta 66, 216-221.

125.     ¡§Mass spectrometric identification of pathogens in foods using a zirconium hydroxide immobilization approach¡¨ C.-T. Chen, P. M. Reddy, Y.-R. Ma, Y.-P. Ho (2012) Int. J. Mass Spectrom. 312, 45-52.

126.     ¡§Investigations on silver/polyaniline electrodes for electrochemical supercapacitors¡¨ D. S. Patil, J. S. Shaikh, S. A. Pawar, R. S. Devan, Y.-R. Ma, A. V. Moholkar, J. H. Kim, R. S. Kalubarme, C. J. Park and P. S. Patil (2012) Phys. Chem. Chem. Phys. 14, 11886-11895.

127.     ¡§PbS quantum dot sensitized anatase TiO2 nanocorals for quantum dot-sensitized solar cell applications¡¨ S. S. Mali, S. K. Desai, S. S. Kalagi, C. A. Betty, P. N. Bhosale, R. S. Devan, Y.-R. Ma, P. S. Patil (2012) Dalton Trans. 41, 6130-6136.

128.     ¡§Hydrothermal synthesis of rutile TiO2 nanoflowers using Brønsted acidic ionic liquid [BAIL]: Synthesis, characterization and growth mechanism¡¨ S. S. Mali, C. A. Betty, P. N. Bhosale, R. S. Devan, Y.-R. Ma, S. S. Kolekar, P. S. Patil (2012) CrystEngComm 14,1920-1924.

129.     ¡§Room-temperature wide-range photoluminescence and semiconducting characteristics of two-dimensional pure metallic Zn nanoplates¡¨ J.-H. Lin, Y.-J. Huang, Y.-P. Su, C.-A. Liu, R. S. Devan, C.-H. Ho, Y.-P. Wang, H.-W. Lee, C.-M. Chang, Y. Liou, Y.-R. Ma* (2012) RSC Adv. 2, 2123-2127.

2011

130.     ¡§Facile and low cost chemosynthesis of nanostructured PbS with tunable optical properties¡¨ S. B. Pawar, J. S. Shaikh, R. S. Devan, Y.-R. Ma, D. Haranath, P. N. Bhosale, P. S. Patil (2011) Appl. Surf. Sci. 258, 1869-1875.

131.     ¡§Scanning photoemission spectromicroscopic study of 4-nm ultrathin SiO3.4 protrusions probe-induced on the native SiO2 layer¡¨ R. S. Devan, S.-Y. Gao, Y.-R. Lin, S.-R. Cheng, C.-E. Hsu, C.-H. Chen, H.-W. Shiu, Y. Liou, Y.-R. Ma* (2011) Microsc. Microanal. 17, 944-949.

132.     ¡§Effect of Mn substitution on electronic structure of Ca9Y(PO4)7:Eu2+,Mn2+ phosphor determined by X-ray absorption spectroscopy¡¨ Y.-R. Lu, C.-H. Huang, T.-M. Chen, J.-H. Lin, Y.-R. Ma, J.-L. Chen, C.-C. Hsu, C.-L. Chen, T.-S. Chan (2011) Chem. Phys. Lett. 515, 245-248.

133.     ¡§Growth mechanism and magnon excitation in NiO nanowalls¡¨ A. C. Gandhi, C.-Y. Huang, C. C. Yang, T. S. Chan, C.-L. Cheng, Y.-R. Ma, S. Y. Wu (2011) Nanoscale Res. Lett. 6, 485.

134.     ¡§Electrochromic properties of large-area and high-density arrays of transparent one-dimensional £]-Ta2O5 nanorods on indium-tin-oxide thin-films¡¨ R. S. Devan, S.-Y. Gao, W.-D. Ho, J.-H. Lin, Y.-R. Ma*, P. S. Patil, Y. Liou (2011) Appl. Phys. Lett. 98, 133117.

135.     ¡§Synthesis and characterization of Ru doped CuO thin films for supercapacitor based on Bronsted acidic ionic liquid¡¨ J. S. Shaikh, R. C. Pawar, R. S. Devan, Y.-R. Ma, P. P. Salvi, S. S. Kolekar, P. S. Patil (2011) Electrochim. Acta 56, 2127-2134.

136.     ¡§Mechanism of light emission and electronic properties of Eu3+-doped Bi2SrTa2O9 system determined by coupled x-ray absorption and emission spectroscopy¡¨ T.-S. Chan, C.-L. Dong, Y.-H. Chen, T.-R. Lu, S. Y. Wu, Y.-R. Ma, C. C. Lin, R.-S. Liu, J.-L. Chen, J. Guo, J.-F. Lee, H.-S. Sheu, C. C. Yang, C. L. Chen (2011) J. Mater. Chem. 21, 17119-17127.

137.     ¡§An Mn Doped Polyaniline Electrode for Electrochemical Supercapacitor¡¨ D. S. Patil, J. S. Shaikh, D. S. Dalavi, M. M. Karanjkar, R. S. Devan, Y.-R. Ma, P. S. Patil (2011) J. Electrochem. Soc. 158, A653-A657.

138.     ¡§Two-dimensional single-crystalline pure Zn hexagonal nanoplates: Size-controllable synthesis and X-ray diffraction study¡¨ R. S. Devan, J.-H. Lin, Y.-J. Huang, C.-C. Yang, Yung Liou, Y.-R. Ma* (2011) Nanoscale 3, 4339-4345.

139.     ¡§Enhancement of green-light photoluminescence of Ta2O5 nanoblock stacks¡¨ R. S. Devan, C.-L. Lin, S.-Y. Gao, C.-L. Cheng, Y. Liou, Y.-R. Ma* (2011) Phys. Chem. Chem. Phys. 13, 13441-13446.

2010

140.     ¡§Investigation of high-temperature phase transformation in one-dimensional Ta2O5 nanorods¡¨ R. S. Devan, J.-H. Lin, W.-D. Ho, S. Y. Wu, Y. Liou, Y.-R. Ma* (2010) J. Appl. Crystallogr. 43, 1062-1067.

141.     ¡§Creation and manipulation of surface magnetic domains in an alternating up-and-down pattern¡¨ G.-C. Xie, L.-C. Lin, S.-Y. Gao, R. S. Devan, S. Y. Wu, Y.-R Ma* (2010) J. Nanosci. Nanotechnol. 10, 4465-4470.

142.     ¡§Low-temperature phase transformation and phonon confinement in one-dimensional Ta2O5 nanorods¡¨ R. S. Devan, W.-D. Ho, S. Y. Wu, Y.-R. Ma* (2010) J. Appl. Crystallogr. 43, 498-503.

143.     ¡§In situ confocal Raman mapping study of a single Ti-assisted ZnO nanowire¡¨ A. C. Gandhi, H.-J. Hung, P.-H. Shih, C.-L. Cheng, Y.-R. Ma, S. Y. Wu (2010) Nanoscale Res. Lett. 5, 581-586.

144.     ¡§Spontaneous self-organization of Cu2O/CuO core-shell nanowires from copper nanoparticles¡¨ J.-Y. Ji, P.-H. Shih, C. C. Yang, T. S. Chan, Y.-R. Ma, S. Y. Wu (2010) Nanotechnology 21, 045603.

2009

145.     ¡§High room-temperature photoluminescence of one-dimensional Ta2O5 nanorod arrays¡¨ R. S. Devan, W.-D. Ho, C.-H. Chen, H.-W. Shiu, C.-H. Ho, C.-L. Cheng, S. Y. Wu, Y. Liou, Y.-R. Ma* (2009) Nanotechnology 20, 445708.

146.     ¡§Room-temperature gas sensing studies of polyaniline thin films deposited on different substrates¡¨ N. G. Deshpande, Y. G. Gudage, R. S. Devan, Y.-R. Ma, Y. P. Lee, R. Sharma (2009) Smart Mater. Struct. 18, 095010.

147.     ¡§Comparative atomic force and scanning electron microscopy: An investigation of structural differentiation of hepatic stellate cells¡¨ K.-T. Chang, M.-J. Tsai, Y.-T. Cheng, J.-J. Chen, R.-H. Hsia, Y.-S. Lo, Y.-R. Ma, C.-F. Weng (2009) J. Struct. Biol. 167, 200.

148.     ¡§Effective dielectric and magnetic properties of (Ni-Co-Cu)ferrite/BTO composite ¡¨ R. S. Devan, Y.-R. Ma, B. K. Chougule (2009) Mater. Chem. Phys. 115, 263.

2008

149.     ¡§X-ray diffraction study of a large-scale and high-density array of one-dimensional crystalline tantalum pentoxide nanorods¡¨ R. S. Devan, W.-D. Ho, J.-H. Lin, S. Y. Wu, Y.-R. Ma*, P.-C. Lee, Y. Liou (2008) Cryst. Growth Des. 8, 4465.

150.     ¡§Size effect of surface magnetic anisotropy in Cu2O nanoparticles¡¨ P.-H. Shih, J.-Y. Ji, Y.-R. Ma, S. Y. Wu (2008) J. Appl. Phys. 103, 07B735.

151.     ¡§Li0.5Co0.75Fe2O4+BaTiO3 particulate composites with coupled magnetic-electric properties¡¨ R. S. Devan, D. R. Dhakras, T. G. Vichare, A. S. Joshi, S. R. Jigajeni, Y.-R. Ma, B. K. Chougule (2008) J. Phys. D: Appl. Phys. 41, 105010.

152.     ¡§Laser oxidation and wide-band photoluminescence of thermal evaporated bismuth thin films¡¨ L. Kumari, J.-H. Lin, Y.-R. Ma* (2008) J. Phys. D: Appl. Phys. 41, 025405.

2007

153.     ¡§Tip-induced large-area oxide bumps and composition stoichiometry test via atomic force microscopy¡¨ Y.-S. Lu, H.-I Wu, S. Y. Wu, Y.-R. Ma* (2007) Surf. Sci. 601, 3788.

154.     ¡§Construction of magnetization reversals of ring and square thin films of Ni80Fe20 using enhanced magnetic force microscopy¡¨ C.-L. You, S. Y. Wu, Y.-R. Ma*, C. Yu, D.-C. Chen, Y. Liou, Y. D. Yao (2007) Surf. Sci. 601, 4279.

155.     ¡§One-dimensional Bi2O3 nanohooks: Synthesis, characterization and optical properties¡¨ L. Kumari, J.-H. Lin, Y.-R. Ma* (2007) J. Phys.: Condens. Matter 19, 406204.

156.     ¡§Synthesis of bismuth oxide nanostructures by an oxidative metal vapor phase deposition technique¡¨ L. Kumari, J.-H. Lin, Y.-R. Ma* (2007) Nanotechnology 18, 295605.

157.     ¡§Direct observation of short-circuit diffusion during the formation of a single cupric oxide nanowire¡¨ C.-L. Cheng, Y.-R. Ma, M. H. Chou, C. Y. Huang, V. Yeh, S. Y. Wu (2007) Nanotechnology 18, 245604.

158.     ¡§Effects of deposition temperature and thickness on the structural properties of thermal evaporated bismuth thin films¡¨ L. Kumari, S.-J. Lin, J.-H. Lin, Y.-R. Ma*, P.-C. Lee, Y. Liou (2007) Appl. Surf. Sci. 253, 5931.

159.     ¡§Magnetoresistance in two-component Ag/Ni nanocompacts¡¨ S. Y. Wu, Y.-R. Ma, M. T. Liao, W.-H. Li (2007) J. Magn. Magn. Mater. 310, 2359.

160.     ¡§X-ray diffraction and Raman scattering studies on large-area array and nano-branched structure of 1D MoO2 nanorods¡¨ L. Kumari, Y.-R. Ma*, C.-C. Tsai, Y.-W. Lin, S. Y. Wu, K.-W. Cheng, Y. Liou (2007) Nanotechnology 18, 115717.

2006

161.     ¡§Magnetic properties of large-area one-dimensional WO2 and MoO2 nanorods¡¨ Y.-R. Ma*, C.-C. Tsai, S. F. Lee, K.-W. Cheng, Y. Liou, Y. D. Yao (2006) J. Magn. Magn. Mater. 304, E13-E15.

162.     ¡§Investigation of Tip-Induced Magnetic Ripples on La0.7Sr0.3MnO3 Surface¡¨, J.-S. Chen, Y.-R. Ma*, Y. Liou, Y. D. Yao (2006) J. Appl. Phys. 99, 08B702.

2005

163.     ¡§Surface magnetic ripples induced by a local magnetic field from a scanning magnetic tip¡¨ H.-I Wu, J.-S. Chen, Y.-R. Ma*, Y. Liou, and Y. D. Yao (2005) IEEE Trans. Magn. 41, 3748.

164.     ¡§Synthesis and characterization of one-dimensional WO2 nanorods¡¨ Y.-R. Ma*, C.-M. Lin, C.-L. Yeh, and R.-T. Huang (2005) J. Vac. Sci. Technol. B 23, 2141.

165.     ¡§Thickness effect of nanosized thin-film iron dot on growth of multiwall carbon nanotubes¡¨ Y.-R. Ma*, M. S. Wong, C.-H. Shee, K.-W. Cheng, J.-C. Wu, Y. Liou, and Y.-D. Yao (2005) J. Appl. Phys. 97, 10J707.

2004

166.     ¡§Pushing nanoparticles of La0.7Sr0.3MnO3¡¨ Y.-R. Ma*, Y. Liou, and Y.-D. Yao (2004) J. Magn. Magn. Mater. 282, 342.

167.     ¡§Effect of field power on growth of multiwall carbon nanotubes¡¨ Y.-R. Ma*, K.-W. Cheng, C.-H. Shee, C.-C. Tsai, M. S. Wong, H.-L. Liu, Y. Liou, and Y.-D. Yao (2004) J. Magn. Magn. Mater. 282, 61.

168.     ¡§Size Effect of nanosized thin-film iron dot on growth of multiwall carbon nanotubes¡¨ M. S. Wong, K.-W. Cheng, C.-H. Shee, Y.-R. Ma*, J.-C. Wu, Y. Liou, and Y.-D. Yao (2004) J. Appl. Phys. 95, 7291.

169.     ¡§Magnetic switching and reversal process in a tip ring structure¡¨ Y. Liou, D.-C. Chen, C. Yu, J. S. Chen, S.-F. Lee, Y. D. Yao, C. C. Tzeng, T. Y. Chen, and K. W. Cheng, and Y.-R. Ma, J. Appl. Phys. 95, 6723, (2004).

170.     ¡§Magnetic studies in octagon-patterned permalloy submicro-wires¡¨ Y. D. Yao, E. W. Huang, S. F. Lee, C. Yu, M. S. Wong, and Y.-R. Ma (2004) J. Magn. Magn. Mater. 272-276, 1686.

2003

171.     ¡§Magnetic force microscopy study in patterned permalloy submicron-wire¡¨ E. W. Huang, C. Yu, S. F. Lee, Y. D. Yao, T. Y. Chen, M. S. Wong, C. R. Chang, B. S. Han, Y.-R. Ma (2003) Inter. J. Nanosci. 2, 325.

 

172.     ¡§Magnetoresistance study in NiFe semicircle-ring patterned wires¡¨ C. Yu, S. F. Lee, Y. D. Yao, Y.-R. Ma, E. W. Huang, J. L. Tsai, T. Y. Chen, C. R. Chang (2003) J. Appl. Phys. 93, 7619.

173.     ¡§Fabrication and physical properties of permalloy nano-size wires¡¨ C. Yu, S. F. Lee, Y. D. Yao, M. S. Wong, E. W. Huang, Y.-R. Ma, J. L. Tsai, C. R. Chang (2003) Phys. B 327, 247.

2002

174.     ¡§Observation and investigation of plasimid DNA using an atomic force microscope¡¨ Y.-R. Ma*, H.-J. Chiang, and Y.-D. Yao (2002) Microsc. Microanal. 8 (suppl. 2), 988.

175.     ¡§Microscopy and Magnetoresistance studies in zigzag and semi-circle-in-series Permalloy wires¡¨ C. Yu, S.-F. Lee, Y.-D. Yao, Y.-R. Ma, J. L. Tsai, and C. R. Chang (2002) Microsc. Microanal. 8 (suppl. 2), 1370.

176.     ¡§Investigation of magnetic domain structures on a thin film surface of La0.7Sr0.3MnO3 at various temperatures using magnetic force microscopy¡¨ Y.-R. Ma*, C.-H. Chueh, W.-L. Kuang, Y. Liou, and Y.-D. Yao (2002) Surf. Sci. 507-510, 571.

177.     ¡§Magnetic force microscopy study in La0.7Sr0.3MnO3/Si(001) around its Curie temperature¡¨ Y.-R. Ma*, C.-H. Chueh, W.-L. Kuang, Y. Liou, and Y.-D. Yao (2002) J. Magn. Magn. Mater. 239, 371.

2001

178.     ¡§Tip-induced local anodic oxidation on the native SiO2 layer of Si(111) using an atomic force microscope¡¨ Y.-R. Ma*, C. Yu, Y.-D. Yao, Y. Liou, and S.-F. Lee (2001) Phys. Rev. B 64, 195324.

1998

179.     ¡§C60 adsorption on the Si(110)-(16x2) surface¡¨ Y.-R. Ma, P. Moriarty, M. D. Upward, P. H. Beton (1998) Surf. Sci. 397, 421.

180.     ¡§Probing the interactions of C60 on Si(100)-2x1 using anisotropic molecular manipulation¡¨ P. Moriarty, Y.-R. Ma, M. D. Upward, P. H. Beton, D. Teehan (1998) Semicond. Sci. Technol. 13, A47.

181.     ¡§Reconstruction dependent adsorption of C60 on GaAs(111)B¡¨ P. Moriarty, M. D. Upward, A. W. Dunn, Y.-R. Ma, P. H. Beton, D. Teehan, D. A. Woolf (1998) Surf. Sci. 405, 21.

182.     ¡§Translation, rotation and removal of individual C60 molecules¡¨ P. Moriarty, Y.-R. Ma, M.D. Upward, P.H. Beton (1998) Surf. Sci. 407, 27.

183.     ¡§C60 terminated Si surfaces: Charge transfer, bonding, and chemical passivation¡¨ P. Moriarty, M.D. Upward, A.W. Dunn, Y.-R. Ma, P.H. Beton, D. Teehan (1998) Phys. Rev. B 57, 362.

1997

184.     ¡§Disorder-Order ripening of C60 islands¡¨ Y.-R. Ma, P. Moriarty, P. H. Beton (1997) Phys. Rev. Lett. 78, 2588.

185.     ¡§Absence of long-range ordered reconstruction on the GaAs(311)A surface¡¨ P. Moriarty, Y.-R. Ma, A. W. Dunn, P. H. Beton, M. Henini, C. McGinley, E. McLoughlin, A. A. Cafolla, G. Hughes, S. Downes, D. Teehan, B. Murphy (1997) Phys. Rev. B 55, 15397.

186.     ¡§Investigation and manipulation of C60 on a Si surface using a scanning tunneling microscope¡¨ P. Moriarty, A. W. Dunn, Y.-R. Ma, M. D. Upward, P. H. Beton (1997) Fullerene Sci. Technol. 5, 769.

187.     ¡§Adsorption of Sb on GaAs(111)B studied by photoemission and low energy electron diffraction¡¨ A. A. Cafolla, C. McGinley, P. Moriarty, A. W. Dunn, Y.-R. Ma, D. Teehan, B. Murphy, S. Downes, D. A. Woolf (1997) Surf. Sci. 377, 130.

1996

188.     ¡§Adsorbed and substituted Sb dimers on GaAs(001)¡¨ P. Moriarty, P. H. Beton, Y.-R. Ma (1996) Phys. Rev. B 53, 16148.

189.     ¡§(2x4)/c(2x8) to (4x2)/c(8x2) transition on the GaAs(001) surfaces¡¨ P. Moriarty, P. H. Beton, Y.-R. Ma, A. W. Dunn, M. Henini, D. A. Woolf (1996) J. Vac. Sci. Technol. B 14, 943.

1994

190.     ¡§Diamond formation in Carbon-Hydrogen Oxygen System¡¨ Y. Liou, Y.-R. Ma (1994) Diamond Relat. Mater. 3, 573.

1993

191.     ¡§Residual-Stress in Tin-coated Graphite¡¨ C. C. Chiu, Y.-R. Ma and Y. Liou (1993) J. Mater. Sci. Lett. 12,1789.