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Leela Manohar Aeshala
Leela Manohar Aeshala
Assistant Professor (Grade-I)
在 nitw.ac.in 的电子邮件经过验证 - 首页
标题
引用次数
引用次数
年份
Effect of solid polymer electrolyte on electrochemical reduction of CO2
LM Aeshala, SU Rahman, A Verma
Separation and purification technology 94, 131-137, 2012
1172012
Effect of cationic and anionic solid polymer electrolyte on direct electrochemical reduction of gaseous CO2 to fuel
LM Aeshala, RG Uppaluri, A Verma
Journal of CO2 Utilization 3, 49-55, 2013
1162013
Electrochemical conversion of CO 2 to fuels: tuning of the reaction zone using suitable functional groups in a solid polymer electrolyte
LM Aeshala, R Uppaluri, A Verma
Physical Chemistry Chemical Physics 16 (33), 17588-17594, 2014
882014
Amines as Reaction Environment Regulator for CO2 Electrochemical Reduction to CH4
LM Aeshala, A Verma
Macromolecular Symposia 357 (1), 79-85, 2015
172015
Electrochemical reduction of CO2 to useful fuel: recent advances and prospects
A Kumar, LM Aeshala, T Palai
Journal of Applied Electrochemistry 53 (7), 1295-1319, 2023
92023
Imidazolium functionalized polymers for effective electrochemical reduction of CO2
A Kumar, LM Aeshala
Journal of Polymer Engineering 41 (3), 211-217, 2021
42021
Investigating temperature variability on antioxidative behavior of synthesized cerium oxide nanoparticle for potential biomedical application
S Pandey, S Kumari, L Manohar Aeshala, S Singh
Journal of Biomaterials Applications 38 (7), 866-874, 2024
32024
Sustainable production of fuel from electrochemical reduction of carbon dioxide
S Singh, LM Aeshala, A Verma
Int J Innov Res Dev 1 (7), 155-160, 2012
22012
Fundamental of hydrogels and nanocomposite hydrogels: synthesis, physiochemical characterization, and biomedical applications
S Kumari, R Rathore, R Jaiswal, S Pandey, N Verma, B Sharma, ...
Functional Nanocomposite Hydrogels, 1-24, 2023
12023
Studies on solid polymer electrolyte for direct electrochemical reduction of co2 to fuel
LM Aeshala
Guwahati, 2014
12014
Development of a Reactor for Continuous Electrochemical Reduction of CO2 Using Solid Electrolyte
LM Aeshala, SU Rahman, A Verma
Energy Sustainability 54686, 1193-1199, 2011
12011
Electrochemical CO2 Reduction to Value-Added Chemicals
A Kumar, A Verma, T Palai, LM Aeshala
From Waste to Wealth, 525-545, 2024
2024
Microbial electrosynthesis of valuable chemicals from the reduction of CO2: a review
D Suri, LM Aeshala, T Palai
Environmental Science and Pollution Research, 1-24, 2024
2024
Porous metal-organic frameworks (MOFs) for hydrogen storage
S Jatothu, LM Aeshala, RK Arya
Sustainable Hydrogen Energy: Production, Storage & Transportation 9, 251, 2024
2024
Thermochemical processes for hydrogen
A Kumar, V Vishwanathan, M Belwal, D Thapliyal, RK Arya, LM Aeshala
Sustainable Hydrogen Energy: Production, Storage & Transportation 9 (55.50), 63, 2024
2024
Augmenting Antioxidative Properties of Cerium Oxide Nanomaterial with Andrographis paniculata Mediated Synthesis and Investigating its Biomedical Potentials.
S Kumari, S Pandey, LM Aeshala, A Kumar, S Singh
Nanofabrication 9, 2024
2024
Amine-functionalized polymer membrane for the electrochemical reduction of CO 2 to hydrocarbons
A Kumar, LM Aeshala, T Palai
Sustainable Energy & Fuels, 2024
2024
Bioelectrochemical Systems for the Conversion of CO2 into Sustainable Production of Fuels
LM Aeshala, S Singh
Whole-Cell Biocatalysis, 335-354, 2024
2024
Co2 to Fuel: Role of Polymer Electrolytes on Efficiency and Selectivity
S Akhter, T Palai, LM Aeshala, A Kannan
Available at SSRN 4891856, 0
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