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三维柔性异质结材料上的高效制氢。

Efficient Hydrogen Production on a 3D Flexible Heterojunction Material.

机构信息

Key Laboratory of Organic Solids, Institute of Chemistry, the Chinese Academy of Sciences, Beijing, 100190, P. R. China.

School of Chemistry and Chemical EngineeringUniversity of Chinese Academy of Sciences, Beijing, 100049, P. R. China.

出版信息

Adv Mater. 2018 May;30(21):e1707082. doi: 10.1002/adma.201707082. Epub 2018 Apr 10.

Abstract

A novel heterojunction material, with electron-rich graphdiyne as the host and molybdenum disulfide as the catalytic center (eGDY/MDS), to produce ultraefficient hydrogen-evolution reaction (HER) at all pH values is described. It is a surprise that the metallic conductor combined from two semiconductor materials, eGDY and MDS, leads to optimal free energy (ΔG ) and enhancement in the intrinsic HER catalytic performances. The calculated and experimental results indicate that eGDY/MDS shows greatly enhanced catalytic activities and high stabilities in both acidic and alkaline conditions; these approach the outstanding performances of the state-of-the-art noble-metal-based catalysts. The eGDY/MDS shows better activity than Pt/C in alkaline media and remarkable enhancement in photocurrent density. The high catalytic activity of eGDY/MDS originates from facilitated electronic transfer kinetics, high conductivity, more exposed catalytic active sites, and excellent mass transport.

摘要

一种新型的异质结材料,以富电子的石墨炔作为主体,二硫化钼作为催化中心(eGDY/MDS),可在所有 pH 值下产生超高效的析氢反应(HER)。令人惊讶的是,由两种半导体材料石墨炔和二硫化钼组成的金属导体导致了最佳的自由能(ΔG)和内在 HER 催化性能的提高。计算和实验结果表明,eGDY/MDS 在酸性和碱性条件下均表现出极大增强的催化活性和高稳定性;这些性能接近最先进的基于贵金属的催化剂的卓越性能。在碱性介质中,eGDY/MDS 比 Pt/C 具有更好的活性,并且光电流密度有显著提高。eGDY/MDS 的高催化活性源于促进了电子转移动力学、高导电性、更多暴露的催化活性位点以及优异的质量传输。

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