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Unveiling the advantages of an ultrathin N-doped carbon shell on self-supported tungsten phosphide nanowire arrays for the hydrogen evolution reaction experimentally and theoretically

机译:发布一个超薄n型的优点碳壳且磷化钨纳米线阵列的氢进化反应实验和理论上

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摘要

Packaging electrocatalysts with carbon shells offers an opportunity to develop stable and effective hydrogen evolution reaction (HER) materials. Here, an ultrathin N-doped carbon-coated self-supported WP nanowire array (WP@NC NA) hybrid has been synthesized. Owing to the encapsulation of the ultrathin N-doped carbon shell on the WP surface, the as-prepared WP@NC NA hybrid exhibits enhanced physicochemical stability, more active sites, and superior conductivity compared with WP NA without carbon coating. Besides, density functional theory calculations demonstrate that the carbon shell can optimize the hydrogen adsorption step in the acidic HER, and simultaneously facilitate water physical adsorption, water dissociation, and hydroxyl group desorption steps during the alkaline HER. These findings demonstrate the intrinsic mechanism of how a carbon shell promotes the acidic and alkaline HER kinetics, and provide scientific guidance for the packaging design of promising carbon-encapsulating self-supported electrocatalysts.
机译:包装electrocatalysts碳壳提供一个稳定和发展的机会有效的氢进化反应(她的)材料。碳涂层且WP纳米线阵列(WP@NC NA)混合合成。超薄封装的n型碳壳牌在WP表面,和WP@NC NA混合展品增强的物理化学稳定性、更积极的网站和优越没有碳导电性与WP NA涂层。计算表明,碳壳可以优化氢吸附步骤酸性的她,同时促进水物理吸附、水分离,羟基在解吸步骤碱性。内在机制的碳壳促进了酸性和碱性动力学,包装和提供科学指导设计有前途carbon-encapsulating且electrocatalysts。

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