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首页> 外文期刊>Applied Surface Science >Designing a novel cactus-like nickel cobalt phosphide based electrocatalyst for hydrogen evolution
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Designing a novel cactus-like nickel cobalt phosphide based electrocatalyst for hydrogen evolution

机译:设计新的仙人掌镍钴基磷化物基磷化物催化剂,用于氢气进化

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摘要

The synthesis and design of non-precious and efficient electrocatalysts by an eco-friendly technique are required for renewable and clean energy. This work reports a successful synthesis of nickel-cobalt phosphide (Ni-Co-P) anchored on carbon fiber cloth (CFC) for advanced electrocatalytic applications. Detail structural and morphological analyses reveal that the interfacial growth of Ni-Co-P on CFC possesses a unique hexagonal sheet exteriorly decorated with nanoneedles around the edges depicting a cactus-like morphology. This Ni-Co-P/CFC exhibits unprecedented electrocatalytic activity for hydrogen evolution reaction (HER) with a current density of 10 and 200 mA cm(-2) acquires at the overpotential of 43 and 149 mV versus reversible hydrogen electrode (RHE), respectively. Based on cyclic-voltammetry (CV) and Tafel plot results, it is deduced that this high activity is mainly credited to the large surface area and a large number of active sites from the hexagonal multilayer-sheet decorated with nanoneedles profile. Moreover, no significant deactivation is observed even after running for 12 h or at least 2000 CV cycles, suggesting excellent stability, making it a promising electrocatalyst. It is expected that our work could provide a new strategy to design non-precious and efficient electrocatalysts for practical applications with highly-active and better-durability for HER.
机译:通过环保技术的非珍贵和有效电催化的合成和设计是可再生和清洁能源所必需的。该工作报告了在碳纤维布(CFC)上成功合成锚定的碳纤维布(CFC),用于先进的电催化应用。细节结构和形态学分析表明,CFC上Ni-Co-p的界面生长具有独特的六边形片,外部装饰着纳米的纳米覆盖物,描绘了仙人掌的形态。该Ni-Co-P / CFC表现出前所未有的电催化活性,用于氢进化反应(其),电流密度为10且200mA cm(-2),在43和149mV与可逆氢电极(RHE)的过电相比,分别。基于循环伏安法(CV)和TAFEL绘图结果,推导出该高活动主要归功于大表面积和大量从纳奈德曲线型材装饰的六边形多层片材的大量活跃部位。此外,即使在运行12小时或至少2000个CV循环后,也没有观察到显着的去激活,表明优异的稳定性,使其成为有前途的电催化剂。预计我们的作品可以为设计非珍贵和高效的电催化剂的实际应用提供新的策略,为她提供高度活跃和更好的耐用性。

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