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POORAN KOLI
POORAN KOLI
Professor of Chemistry, Jai Narain Vyas University, Jodhpur-342001,Rajasthan (INDIA)
在 jnvu.edu.in 的电子邮件经过验证 - 首页
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引用次数
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Solar energy conversion and storage: Rhodamine B-Fructose photogalvanic cell
P Koli, U Sharma, KM Gangotri
Renewable energy 37 (1), 250-258, 2012
462012
Solar energy conversion and storage: Fast Green FCF-Fructose photogalvanic cell
P Koli
Applied energy 118, 231-237, 2014
372014
Brilliant Cresyl Blue–Fructose for enhancement of solar energy conversion and storage capacity of photogalvanic solar cells
U Sharma, P Koli, KM Gangotri
Fuel 90 (11), 3336-3342, 2011
362011
Eco-restoration of degraded lands through trees and grasses improves soil carbon sequestration and biological activity in tropical climates
A Ghosh, RV Kumar, MC Manna, AK Singh, CM Parihar, S Kumar, AK Roy, ...
Ecological Engineering 162, 106176, 2021
302021
Study of enhanced photogalvanic effect of Naphthol Green B in natural sunlight
P Koli
Journal of Power Sources 285, 310-317, 2015
292015
Photochemical solar power and storage through photogalvanic cells: Comparing performance of dye materials
P Koli, U Sharma
Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 39 …, 2017
272017
Energy conversion in electrolyte under artificial light: Fast Green FCF-Fructose-surfactant-small Pt electrode photogalvanic cell
P Koli, U Sharma
Applied Solar Energy 52, 76-83, 2016
272016
Photogalvanic cells: Comparative study of various synthetic dye and natural photo sensitizer present in spinach extract
P Koli
RSC Advances, DOI: 10.1039/C4RA08373C, 2014
262014
Surfactant and natural sunlight enhanced photogalvanic effect of Sudan I dye
P Koli
Arabian journal of chemistry 10 (8), 1077-1083, 2017
252017
Study of the enhancement on photogalvanics: solar energy conversion and storage in EDTA–safranine O–NaLS system
P Gangotri, P Koli
Sustainable Energy & Fuels 1 (4), 882-890, 2017
252017
Use of Congo red dye-formaldehyde as a new sensitizer-reductant couple for enhanced simultaneous solar energy conversion and storage by photogalvanic cells at the low and …
P Koli, Y Dayma, RK Pareek, M Jonwal
Scientific reports 10 (1), 19264, 2020
232020
Simultaneous electrochemical solar power generation and storage using metanil yellow-formic acid as a new sensitizer-reductant couple in photogalvanic cells
P Koli, Y Dayma, RK Pareek
RSC advances 9 (13), 7560-7574, 2019
232019
Formic Acid reductant-Sodium Lauryl Sulphate Surfactant enhanced photogalvanic effect of Indigo Carmine dye sensitizer for simultaneous solar energy conversion and storage
P Koli, RK Pareek, Y Dayma, M Jonwal
Energy Reports 7, 3628-3638, 2021
222021
Solar energy conversion and storage using Naphthol Green B dye photosensitizer in Photogalvanic cells
P Koli
Applied Solar Energy 50 (2), 67-73, 2014
222014
Sodium Lauryl Sulphate Enhanced Solar Energy Conversion by Photogalvanic Effect of Rhodamine B‐Fructose in Artificial Light
P Koli
ChemistrySelect 1 (15), 4624-4629, 2016
182016
Photogalvanic effect of natural photosensitizer (crude spinach extract) in artificial light for simultaneous solar power generation and storage
P Koli
Environmental Progress & Sustainable Energy 37 (5), 1800-1807, 2018
172018
Enhancing efficiency of fast green FCF–fructose photogalvanic solar cell by using surfactant in natural sunlight
P Koli
International Journal of Ambient Energy 40 (8), 868-874, 2019
152019
Sudan-I dye and Fructose chemicals based photogalvanic cells for electrochemical solar energy conversion and storage at low and artificial sun intensity
P Koli
Arabian Journal of chemistry 14 (2), 102918, 2021
142021
Photogalvanic effect of Brilliant Cresyl Blue–Fructose–surfactant–small Pt electrode-artificial light: Simultaneous solar energy conversion and storage
P Koli, U Sharma, Y Dayma, RK Pareek
Energy Sources, Part A: Recovery, Utilization, and Environmental Effects 40 …, 2018
112018
Modified and simplified photogalvanic cells: Solar energy harvesting using bromo cresol green dye with different electrodes and cell dimensions
P Koli, Y Dayma, RK Pareek, R Kumar, M Jonwal
Journal of Electroanalytical Chemistry 904, 115942, 2022
102022
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