| Literature DB >> 29635870 |
Huidi Yu1,2, Yurui Xue1, Lan Hui1, Chao Zhang1, Yongjun Li2, Zicheng Zuo1, Yingjie Zhao3, Zhibo Li3, Yuliang Li1,2.
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 (ΔGH ) 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.Entities:
Keywords: electrocatalysts; flexible heterojunction materials; graphdiyne; hydrogen production; molybdenum disulfide
Year: 2018 PMID: 29635870 DOI: 10.1002/adma.201707082
Source DB: PubMed Journal: Adv Mater ISSN: 0935-9648 Impact factor: 30.849