Zobrazeno 1 - 10
of 92
pro vyhledávání: '"R., Kothandaraman"'
Publikováno v:
In Journal of Energy Storage 10 October 2024 99 Part B
Autor:
T. Moser, R. Kothandaraman, S. Yang, A. Walter, S. Siegrist, H. Lai, E. Gilshtein, A. N. Tiwari, F. Fu
Publikováno v:
Frontiers in Energy Research, Vol 10 (2022)
This work aims at extending the understanding of the formation processes of (Cs0.07FA0.93)PbI3 perovskite layers deposited by a two-step vapour method. In a first step, an inorganic CsI/PbI2 precursor stack is deposited by thermal evaporation (TE). A
Externí odkaz:
https://doaj.org/article/76d852232c084926ab79072029fcc851
Publikováno v:
In Applied Surface Science 1 October 2017 418 Part A:30-39
Autor:
M, Veerababu, R, Kothandaraman
Publikováno v:
In Electrochimica Acta 1 April 2017 232:244-253
Publikováno v:
New Journal of Chemistry; 9/7/2023, Vol. 47 Issue 33, p15677-15685, 9p
Akademický článek
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Publikováno v:
Batteries & Supercaps. 3:780-788
Publikováno v:
Materials Advances. 1:1930-1938
Styrene–DVB copolymer grafted semi-interpenetrating type PVDF-based proton exchange membranes (PEMs) have been designed for vanadium redox flow battery (VRFB) applications. The PEM contains separate regions for the proton conduction via hydrophilic
Publikováno v:
Applied Surface Science. 489:867-874
Due to high conductivity and ion mobility, generally acidic electrolyte such as 1 M H2SO4 was commonly used as an electrolyte in supercapacitor (SC) applications. The high conductivity due to proton comes with a penalty of high corrosion rate of cell
Publikováno v:
Materials Letters. 247:63-66
Thermally activated graphite felt (T-GF) electrode coated with carbon derived from the sugar cane bagasse (AC-SCB) was investigated for catalyzing the VO2+/VO2+ reaction in vanadium redox flow battery (VRFB). Micrographs from the scanning electron mi