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MoP/MoC@C:一种在整个 pH 范围内高效析氢的电催化剂的新组合。

MoP/MoC@C: A New Combination of Electrocatalysts for Highly Efficient Hydrogen Evolution over the Entire pH Range.

机构信息

Key Laboratory of Polyoxometalate Science of Ministry of Education, Faculty of Chemistry, Northeast Normal University , Changchun 130024, P.R. China.

出版信息

ACS Appl Mater Interfaces. 2017 May 17;9(19):16270-16279. doi: 10.1021/acsami.7b03823. Epub 2017 May 3.

Abstract

During the exploration of highly efficient noble-metal-free electrocatalysts for the hydrogen evolution reaction (HER), a promising and challenging strategy is to fabricate composite nanocatalysts by finely tuning metal and/or nonmetal element components. Herein, we report a new HER electrocatalyst, which is composed of molybdenum phosphide and molybdenum carbide composite nanoparticles (NPs) coated by few-layer N-doped graphitic carbon shells (denoted as MoP/MoC@C). Such a new combination mode of electrocatalysts is realized by a one-step annealing route with the mixture of a Mo/P-based polyoxometalate (POM) and dicyandiamide. On the basis of this method, the simultaneous phosphorization and carbonization in a nanoscale confined space can be easily achieved by the use of POM as the molecular-element-regulating platform. MoP/MoC@C exhibits more remarkable HER performance over the whole pH range than those of MoP, MoC, and the physical mixture of MoP and MoC. The low overpotentials of 89, 136, and 75 mV were obtained at a current density of 10 mA cm in the media of pH = 0, 7, and 14, respectively. Furthermore, MoP/MoC@C shows a long-term durability for 14 h over the entire pH range (0-14). Because of the protection of carbon shells, such composite electrocatalyst also possesses better transition-metal tolerance exemplified by Fe, Co, and Ni than that of 20% commercial Pt/C. This work demonstrates the advantage of POM precursors in adjusting the component and properties of nanoscale composite electrocatalysts for HER, which may suggest new options for the fabrication of highly efficient composite electrocatalysts.

摘要

在探索高效的无贵金属析氢反应(HER)电催化剂的过程中,一种很有前景且具有挑战性的策略是通过精细调整金属和/或非金属元素成分来制备复合纳米催化剂。在此,我们报告了一种新的 HER 电催化剂,它由磷钼化物和碳化钼复合纳米颗粒(NPs)组成,表面覆盖着几层氮掺杂石墨碳壳(表示为 MoP/MoC@C)。这种电催化剂的新组合模式是通过一步退火路线实现的,该路线使用钼/磷基多金属氧酸盐(POM)和双氰胺的混合物。在此方法的基础上,通过使用 POM 作为分子元素调节平台,可以很容易地在纳米级受限空间中同时实现磷和碳化。MoP/MoC@C 在整个 pH 范围内的 HER 性能都优于 MoP、MoC 和 MoP 和 MoC 的物理混合物。在 pH = 0、7 和 14 的介质中,电流密度为 10 mA cm 时,分别获得了 89、136 和 75 mV 的低过电位。此外,MoP/MoC@C 在整个 pH 范围内(0-14)具有长达 14 小时的长期耐久性。由于碳壳的保护,这种复合电催化剂对铁、钴和镍等过渡金属的耐受性也优于 20%商业 Pt/C。这项工作证明了 POM 前体在调整纳米级复合电催化剂 HER 成分和性能方面的优势,这可能为高效复合电催化剂的制备提供新的选择。

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