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Ni-based nanocomposite material as a highly efficient catalyst for electrochemical production of hydrogen

机译:基于Ni的纳米复合材料作为高效催化剂,用于电化学生产的氢气

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The present study reports a simple, inexpensive, and direct method for the preparation of nanocomposite (NC) material (Ni/Co-NC) as advanced catalysts for hydrogen production (HP). The Ni/Co-NC was prepared using solvothermal method (STM) followed by thermal annealing, characterized and tested for HP in 0.6 M H2SO4. The as-synthesized Ni/Co-NC contains a high density of active edge sites, exhibits high electro-catalytic HP activity under small cathodic onset potential (VON-P) of -0.03 V, and a small Tafel slope of approximately 29 mV/decade, which exceeds the activity of previously studied Pt-free catalysis. Annealing temperature significantly affects the Ni/Co-NC activity toward HP by forming active nanoparticles with an optimum identified at 250 degrees C. The HP process is controlled via Volmer-Tafel charge-transfer mechanism over the electrode interface. The presented method can be used as a new strategy for manufacturing advanced electro-catalysts for the production of hydrogen from different resources. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本研究报告了一种简单,廉价,直接的方法,用于制备纳米复合材料(NC)材料(Ni / Co-NC)作为氢气产生(HP)的先进催化剂。使用溶剂热法(STM)制备Ni / Co-Nc,然后进行热退火,其特征和测试在0.6M H 2 SO 4中的HP。作为合成的Ni / Co-NC含有高密度的活性边缘位点,在-0.03V的小阴极发作潜力(von-p)下表现出高电催化HP活性,小Tafel斜率约为29mV /十年,超过先前研究过的无水催化的活动。通过在250℃下形成有活性的纳米颗粒,退火温度显着影响HP的Ni / Co-NC活性。通过在电极接口上通过Volmer-Tafel电荷转移机构控制HP工艺。本方法可用作制造用于制造来自不同资源的氢的先进电催化剂的新策略。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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