СИНТЕЗ И СВОЙСТВА ЭЛЕКТРОКАТАЛИЗАТОРА БИМЕТАЛЛИЧЕСКОГО ФОСФИДА Ni-Cи-P, ПРЕДНАЗНАЧЕННОГО ДЛЯ ЭЛЕКТРОЛИЗА ВОДЫ
Kalit so‘zlar:
гидротермальный синтез, биметаллический фосфид, морфология структуры, фазовый анализ, электрокатализатор.Annotatsiya
Синтез Ni-Cu-P проводился одностадийным гидротермальным методом. Структурные свойства образца изучали методами сканирующей электронной микроскопии (СЭМ), энергодисперсионной спектроскопии.
Adabiyotlar
A. Grimaud, K.J. May, C.E. Carlton, Y.L. Lee, M. Risch, W.T. Hong, J. Zhou, Y. Shao-Horn. Double perovskites as a family of highly active catalysts for oxygen evolution in alkaline solution, Nat. Commun., 2013, Vol. 4, pp. 1–7.
Min Wang1 et. al. A highly efficient Fe-doped Ni3S2 electrocatalyst for overall water splitting // Nano Res., 2021, Vol. 14, pp. 4740–4747.
Hyogyun Roh et. al. Various metal(Fe, Mo, V, Co)-doped Ni2P nanowire arrays as overall water splitting electrocatalysts and their applications in unassisted solar hydrogen production with STH 14 %. Applied Catalysis B: Environmental Sci., 2021, Vol. 297, 420-434.
Li Wei at. al. A Hierarchically Porous Nickel-Copper Phosphide Nano-Foam for Efficient Electrochemical Splitting of Water // Nanoscale, 2017, Vol. 9, pp. 4401-4408.
V.N. Nguyen, L. Blum. Electrochemical Generation of Syngas from Water and Carbon Dioxide at Industrially Important Rates // Chem. Ing. Tech., 2015, Vol. 87, pp. 354-375.
M. Götz, J. Lefebvre, F. Mörs, A. McDaniel Koch, F. Graf, S. Bajohr, R. Reimert, T. Kolb. Renewable Power-to-Gas: A technological and economic review // Renew. Energ., 2016, Vol. 85, pp. 1371-1390.
I.C. Man, H.Y. Su, F. Calle-Vallejo, H.A. Hansen, J. I. Martinez, N.G. Inoglu, J. Kitchin, T.F. Jaramillo, J.K. Norskov, J. Rossmeisl. Universality in Oxygen Evolution Electrocatalysis on Oxide Surfaces // Chemcatchem.,2011, Vol. 3, pp. 1159-1165.
H. Dau, C. Limberg, T. Reier, M. Risch, S. Roggan, P. Strasser. The Mechanism of Water Oxidation: From Electrolysis via Homogeneous to Biological Catalysis // Chemcatchem., 2010, Vol. 2, pp. 724-761.
C.L. McCrory, S. Jung, J.C. Peters, T.F. Jaramillo. Benchmarking Heterogeneous Electrocatalysts for the Oxygen Evolution Reaction // J. Am. Chem. Soc., 2013, Vol. 135, pp. 16977-16987.
P. Du, R. Eisenberg. Catalysts made of earth-abundant elements (Co, Ni, Fe) for water splitting: Recent progress and future challenges // Energy Environ. Sci., 2012, Vol. 5, pp. 6012-6021.
W. T. Hong, M. Risch, K. A. Stoerzinger, A. Grimaud, J. Suntivich, Y. Shao-Horn. Toward the rational design of non-precious transition metal oxides for oxygen electrocatalysis// Energy Environmental Sci., 2015, Vol. 8, pp. 1404-1427.
Qijie Mo, Wenbiao Zhang, LiuqingHeXiang Yu, Qingsheng Gao. Bimetallic Ni2-xCoxP/N-doped carbon nanofibers: Solid-solution-alloy engineering toward efficient hydrogen evolution // Applied Catalysis B: Environmental Sci., 2019, Vol. 244, pp. 620-627.
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