Publications Total – 65
Total citations: ~3500 (Google scholar) and h-index – 25;
Average Impact Factor of journal – 5.464
Some of Selected Papers:
- "Fabrication of ultra-thin, flexible, dendrite-free, robust and nanostructured solid electrolyte membranes for solid-state Li-batteries", Brahma Prakash Dubey , Asit Sahoo , Venkataraman Thangadurai and Yogesh Sharma, J. Mater. Chem. A, 2022, 10, 12196-12212 (Impact Factor: 12.212)
- "Fabrication of Binder-Free TiO2 Nanofibers@Carbon Cloth for Flexible and Ultra-Stable Supercapacitor for Wearable Electronics", Shalu Rani, Nagesh Kumar, and Yogesh Sharma Adv. Electron. Mater. 2022, 2200108 (Impact Factor: 7.5)
- "Designing the Binder-Free Conversion-Based Manganese Oxide Nanofibers as Highly Stable and Rate-Capable Anode for Next-Generation Li-Ion Batteries", Abhinav Tandon, Shalu Rani, and Yogesh Sharma ACS Applied Energy Material (accepted) 2022 (Impact Factor: 6.2)
- "Tailoring the surface energy and area surface resistance of solid-electrolyte polymer membrane for dendrite free, high-performance, and safe solid-state Li-batteries", Brahma Prakash Dubey, Asit Sahoo, Yogesh Sharma, Journal of Power Sources (accepted )2022. (Impact Factor: 9.21)
- "Tailoring the morphology of orthorhombic Li2MnSiO4 by carbon additive and its impact on transport and Li-storage properties", Meetesh Singh, Nagesh Kumar, Yogesh Sharma, Journal of Power Sources Accepted 2022 (Impact Factor:9.21)
- "Controlled generation and tuning the oxygen defects in nanofibers of Ca2Fe2O5 toward high and stable Li-ion battery anode", S. K. Sundriyal and Yogesh Sharma, Applied Surface Science 15 (2021) 150055 (Impact Factor: 6.182)
- “Toward the Origin of Magnetic Field Dependent Storage Properties: A Case Study on Supercapacitive Performance of FeCo2O4 Nanofibers”, Milan Singh, Asit Sahoo, K. L. Yadav, Yogesh Sharma, ACS Appl. Mater. Interface 12 (2020) 49530 (Impact Factor: 8.758)
- “Revealing the Effect of Oxygen Defects and Morphology on Li-Storage Performance of Calcium Iron Oxide” Sandeep Kumar Sundriyal, Yogesh Sharma, J. Electrochem. Soc., 167 (2020) 110526 (Impact Factor: 3.721 )
- “Role of Oxygen Deficiency and Microstructural Voids/Gaps in Nanostructures of Ca2Fe2O5 as an Anode Toward Next-Generation High-Performance Li-ion Batteries”, Sandeep Kumar Sundriyal, Yogesh Sharma, ACS Appl. Energy Mater., 3 (2020) 6360 (Impact Factor: 4.473)
- “Facile and One-step In-situ Synthesis of Pure Phase Mesoporous Li2MnSiO4/CNTs Nanocomposite for Hybrid Supercapacitors”, Nagesh Kumar, Meetesh Singh, Amit Kumar, Tseung Y. Tseng, Yogesh Sharma, ACS Appl. Energy Mater., 3 (2020) 2450 (Impact Factor:4.473 )
- “Morphological, dielectric and transport properties of garnet-type Li6.25+yAl0.25La3Zr2-yMnyO12 (y = 0, 0.05, 0.1, and 0.2)”, Brahma Prakash Dubey, Asit Sahoo, Venkataraman Thangadurai, Yogesh Sharma, Solid State Ionics, 351 (2020) 115339 (Impact Factor: 3.107 )
- “Synthesis of Free-Standing Flexible rGO/MWCNT Films for Symmetric Supercapacitor Application”, Amit Kumar, Nagesh Kumar, Yogesh Sharma, Jihperng Leu, Tseung Y Tseng, Nanoscale Res Lett., 14 (2019) 266 (Impact Factor: 3.581 )
- “One-Pot Synthesis of Pure Phase Mn3O4 at Room Temperature and Probing its Long Term Supercapacitive Performance”, Amit Kumar, Nagesh Kumar, Yogesh Sharma, Ionics, 25 (2019) 707. (Impact Factor: 2.394)
- "Incorporation of alloy-de-alloy phase with conversion based manganese oxide to enable high and stable capacity and density functional theory study of CdMn2O4", Asit Sahoo, Bhrigumoni Deka, Yogesh Sharma, J. Electrochem. Soc. 165 (2018) A1610. (Impact Factor: 3.662)
- “Probing the electrical properties and energy storage performance of electrospun ZnMn2O4 nanofibers”, Jai Bhagwan, Nagesh Kumar, K. L. Yadav, Yogesh Sharma, Solid State Ionics 321 (2018) 75. (Impact Factor: 2.751)
- “Numerical modeling of transport limitations in lithium titanate anodes”, Muhammad Rashid, Asit Sahoo, Amit Gupta, Yogesh Sharma, Electrochim. Acta 283 (2018) 313. (Impact Factor: 5.116)
- "Improved energy storage, magnetic and electrical properties of aligned, high aspect ratio, mesoporous electrospunned spinel-NiMn2O4 nanofibers", Jai Bhagwan, S. Rani, V. Sivasanakran, K. L. Yadav, Yogesh Sharma, Applied Surface Science 426 (2017) 913. (Impact Factor: 4.439)
- "Synthesis and transport properties of nanostructured lithium manganese silicate (Li2MnSiO4) as Li-ion battery cathode material." Prerna Chaturvedi, Anjan Sil, Yogesh Sharma, Solid State Ionics 297 (2016) 68. (Impact Factor: 2.751)
- “In -situ conversion of manganese carbonate to manganese oxide/hydroxide and its supercapacitive analysis in aqueous KOH solution” by Amit Kumar, Yogesh Sharma, Ionics 23 (2017) 3049 (Impact Factor: 2.347).
- “Porous, one-dimensional and high aspect ratio nanofibric network of cobalt manganese oxide as a high performance material for aqueous and solid-state supercapacitor (2 V), Jai Bhagwan, V. Sivasankaran, K. L. Yadav, Yogesh Sharma, J. Power Sources 327 (2016) 29 (Impact Factor: 6.945)
- “Porous, one dimensional and high aspect ratio Mn3O4 nanofibers: Fabrication and optimization for enhanced supercapacitive properties”, Jai Bhagwan, Asit Sahoo, K. L. Yadav, Yogesh Sharma, Electrochim. Acta 174 (2015) 992 (Impact Factor: 5.116)
- “Electrospun Zn1-xMnxFe2O4 nanofibers as anodes for lithium ion batteries and the impact of mixed transition metallic oxides on battery performance”, P. F. Teh, S. S. Pramana, Yogesh Sharma, Y. W. Ko, M. Srinivasan, ACS Appl. Mater. Interface 5 (2013) 5461. (Impact Factor: 8.097).
- “Electrochemical reactivity with lithium of spinel-type ZnFe2-yCryO4 (0≤ y≤ 2)”, Pei Fen Teh, Stevin S Pramana, C. Kim, Chieh-Ming Chen, Cheng-Hao Chuang, Yogesh Sharma, Jordi Cabana, Madhavi Srinivasan, J. Phys. Chem. C 117 (2013) 24213. (Impact Factor: 4.484).
- "Nano-web anodes composed of one dimensional, high aspect ratio, size tunable electrospun ZnFe2O4 nanofibers for lithium ion batteries", P. F. Teh, Yogesh Sharma, S. S. Pramana, M. Srinivasan, J. Mater Chem. 21 (2011) 14999. (Impact Factor: 9.931)
- "Achieving High Specific Charge Capacitances in Fe3O4/Reduced Graphene Oxide Nanohybrids”, W. Shi, J. Zhu, D. H. Sim, Y. Y. Tay, Z. Lu, X. Zhang, Yogesh Sharma, M. Srinivasan, H. Zhang, H. H. Hng, Q. Yan, J. Mater. Chem. 21 (2011) 3422. (Impact Factor: 9.931).
- "Cobalt oxide nano-wall arrays on reduced graphene oxide sheets with controlled phase, grain size and porosity for Li-ion battery electrodes”, J. Zhu, Yogesh K. Sharma, Z. Zeng, X. Zhang, M. Srinivasan, S. Mhaisalkar, H. Zhang, H. H. Hng, Q. Yan, J. Phys. Chem. C 115 (2011) 8400. (Impact Factor: 4.484)
- "Nano-(Cd1/3Co1/3Zn1/3)CO3: A new and high capacity anode material for Li-ion batteries”, Yogesh Sharma, N. Sharma, G. V. Subba Rao, B. V. R. Chowdari, J. Mater. Chem. 19 (2009) 5047. (Impact Factor: 9.931)
- “Li-storage and cyclability of nano-CdSnO3 as an anode material for Li-ion batteries”, Yogesh Sharma, N. Sharma, G. V. Subba Rao, B. V. R. Chowdari, J. Power Sources 192 (2009) 627. (Impact Factor: 6.945)
- “Studies on nano-‘CaO.SnO2’ and nano-CaSnO3 as anodes for Li-ion batteries”, Yogesh Sharma, N. Sharma, G. V. Subba Rao, B. V. R. Chowdari, Chem. Mater. 20 (2008) 6829. (Impact Factor: 9.890)
- “Li-storage and cyclability of urea combustion derived ZnFe2O4 as anode for Li-ion batteries”, Yogesh Sharma, N. Sharma, G. V. Subba Rao, B. V. R. Chowdari, Electrochim. Acta 53 (2008) 2380. (Impact Factor: 5.116)
- "Studies on spinel cobaltites, FeCo2O4 and MgCo2O4 as anodes for Li-ion batteries”, Yogesh Sharma, N. Sharma, G. V. Subba Rao, B. V. R. Chowdari, Solid State Ionics 179 (2008) 587. (Impact Factor: 2.751)
- “Nanophase-ZnCo2O4 as a high performance anode material for Li-ion batteries”, Yogesh Sharma, N. Sharma, G. V. Subba Rao, B. V. R. Chowdari, Adv. Funct. Mater. 17 (2007) 2855. (Impact Factor: 13.325)
- “Li -recycling behavior of nanophase-CuCo2O4 as anode for lithium ion batteries”, Yogesh Sharma, N. Sharma, G. V. Subba Rao, B. V. R. Chowdari, J. Power Sources 173 (2007) 495. (Impact Factor: 6.945)
For more details: Please visit http://faculty.iitr.ac.in/~yogeshfph/