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首页> 外文期刊>Nanoscale >Heterogeneous Ni3P/Ni nanoparticles with optimized Ni active sites anchored in N-doped mesoporous nanofibers for boosting pH-universal hydrogen evolution
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Heterogeneous Ni3P/Ni nanoparticles with optimized Ni active sites anchored in N-doped mesoporous nanofibers for boosting pH-universal hydrogen evolution

机译:N掺杂介孔纳米纤维中锚定了具有优化Ni活性位点的异质Ni3P/Ni纳米颗粒,用于促进pH普遍析氢

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摘要

Developing low-cost, environmentally friendly and efficient non-precious metal electrocatalysts as alternatives to noble metals for the hydrogen evolution reaction (HER) is highly essential for the sustainable advancement of green hydrogen energy. Herein, a novel heterostructured Ni3P/Ni nanoparticle anchored in nitrogen-doped mesoporous carbon nanofibers (Ni3P/Ni@N-CNFs) is prepared by a facile solid-phase calcination protocol. The results demonstrated that benefiting from the intensive electronic coupling effect at the interface of the Ni3P/Ni heterostructure, the electron configuration of the Ni active site is optimized and thus the favorable HER activity. Furthermore, the N-doped carbon nanofiber scaffold with an extensive mesoporous structure endows Ni3P/Ni@N-CNFs with abundant electrochemically active sites together with excellent conductivity and stability, contributing to fast electron/mass transport. As expected, the resultant Ni3P/Ni@N-CNF electrocatalyst exhibited exceptional HER catalytic properties under universal pH conditions, driving a current density of 10 mA cm−2 at pretty low overpotentials of 121 mV, 145 mV and 187 mV in acidic, basic and neutral solutions, respectively, and retaining the catalytic stability for over 60 h. This intriguing work represents a fresh perspective for designing and exploiting highly advanced phosphide electrocatalysts for green hydrogen fuel production.
机译:开发低成本、环境友好高效non-precious金属electrocatalysts替代贵金属的氢进化反应(她的)是非常重要的可持续发展的绿色氢能量。纳米粒子固定在nitrogen-doped介孔纳米碳纤维(Ni3P / Ni@N-CNFs)由一个灵巧的固相煅烧协议。受益于密集的电子耦合影响Ni3P / Ni的接口异质结构的电子构型优化,从而Ni活性部位优惠活动。碳纳米纤维支架的广泛介孔结构赋予Ni3P / Ni@N-CNFs丰富的电化学网站在一起具有优良的导电性和稳定性,导致快电子/质量传输。预期,结果Ni3P / Ni@N-CNFelectrocatalyst表现出特殊的她催化性能在普遍的pH值条件,开车10马的电流密度厘米−2 121 mV在相当低的过电压,145mV和187 mV在酸性、碱性和中性解决方案,分别和保留催化稳定超过60 h。有趣的工作代表了一个新的视角对设计和开发高度发达磷化electrocatalysts绿色氢燃料生产。

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