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首页> 外文期刊>ChemSusChem >Encapsulating Co2P@C Core-Shell Nanoparticles in a Porous Carbon Sandwich as Dual-Doped Electrocatalyst for Hydrogen Evolution
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Encapsulating Co2P@C Core-Shell Nanoparticles in a Porous Carbon Sandwich as Dual-Doped Electrocatalyst for Hydrogen Evolution

机译:将CO 2P核心壳纳米粒子封装在多孔碳夹层中作为双掺杂电催化剂的氢气进化

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摘要

A highly efficient and pH-universal hydrogen evolution reaction (HER) electrocatalyst with a sandwich-architecture constructed using zero-dimensional N- and P-dual-doped core-shell Co2P@C nanoparticles embedded into a 3D porous carbon sandwich (Co2P@N,P-C/CG) was synthesized through a facile two-step hydrothermal carbonization and pyrolysis method. The interfacial electron transfer rate and the number of active sites increased owing to the synergistic effect between the N,P-dual-doped Co2P@C core-shell and sandwich-nanostructured substrates. The presence of a high surface area and large pore sizes improved the mass-transfer dynamics. This nanohybrid showed remarkable electrocatalytic activity toward the HER in a wide pH range with good stability. The computational study and experiments revealed that the carbon atoms close to the N and P dopants on the shell of Co2P@N,P-C were effective active sites for HER catalysis and that both Co2P and the N,P dopants gave rise to an optimized binding free energy of H on the active sites.
机译:具有使用零尺寸N-和P-D-DOPED核心壳CO2P嵌入3D多孔碳三明治(CO2P @ N的CONIC炭夹层(CO2P)(CO2P @ N)构建的夹层架构的高效和pH-通用的氢气进化反应(她)电催化剂。 PC / CG)通过容易的两步水热碳化和热解法合成。由于N,P双掺杂CO2P @ C核 - 壳和夹层 - 纳米结构基板之间的协同效应,界面电子传递率和活性位点的数量增加。高表面积和大孔径的存在改善了传质动态。该纳米冬次含量在具有良好稳定性的宽pH范围内向她展示了显着的电催化活性。计算研究和实验表明,CO 2P @ N,PC壳上的N和P掺杂剂靠近N和P掺杂剂的碳原子是其催化的有效活性位点,并且CO 2P和N,P掺杂剂均产生优化的粘合活跃点上的H能量。

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