Ajou University repository

Interaction Mediator Assisted Synthesis of Mesoporous Molybdenum Carbide: Mo-Valence State Adjustment for Optimizing Hydrogen Evolution
  • Kim, Seongbeen ;
  • Choi, Changhyeok ;
  • Hwang, Jongkook ;
  • Park, Jinkyu ;
  • Jeong, Jooyoung ;
  • Jun, Hyunwoo ;
  • Lee, Seonggyu ;
  • Kim, Soo Kil ;
  • Jang, Jong Hyun ;
  • Jung, Yousung ;
  • Lee, Jinwoo
Citations

SCOPUS

92

Citation Export

Publication Year
2020-04-28
Publisher
NLM (Medline)
Citation
ACS nano, Vol.14, pp.4988-4999
Keyword
electrochemical hydrogen evolution reactionmesoporous materialmetal valencemolybdenum carbidevolcano correlation
All Science Classification Codes (ASJC)
Materials Science (all)Engineering (all)Physics and Astronomy (all)
Abstract
To overcome inherent limitations of molybdenum carbide (MoxC) for hydrogen evolution reaction (HER), i.e., low density of active site and nonideal hydrogen binding strength, we report the synthesis of valence-controlled mesoporous MoxC as a highly efficient HER electrocatalyst. The synthesis procedure uses an interaction mediator (IM), which significantly increases the density of active site by mediating interaction between PEO-b-PS template and Mo source. The valence state of Mo is tuned by systematic control of the environment around Mo by controlled heat treatment under air before thermal treatment at 1100 °C. Theoretical calculations reveal that the hydrogen binding is strongly influenced by Mo valence. Consequently, MoxC achieves a significant increase in HER activity (exceeding that of Pt/C at high current density ∼35 mA/cm2 in alkaline solution). In addition, a volcano-type correlation between HER activity and Mo valence is identified with various experimental indicators. The present strategies can be applied to various carbide and Mo-based catalysts, and the established Mo valence and HER relations can guide development of highly active HER electrocatalysts.
ISSN
1936-086X
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/31278
DOI
https://doi.org/10.1021/acsnano.0c01285
Type
Article
Show full item record

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

Related Researcher

Hwang, Jongkook Image
Hwang, Jongkook황종국
Department of Chemical Engineering
Read More

Total Views & Downloads

File Download

  • There are no files associated with this item.