Controlled Doping of Electrocatalysts through Engineering Impurities

  • Kim, Se-Ho
  • Yoo, Su-Hyun
  • Shin, Sangyong
  • El-Zoka, Ayman A.
  • Kasian, Olga
  • ... Lim, Joohyun
  • 외 6명
Citations

WEB OF SCIENCE

27
Citations

SCOPUS

27

초록

Fuel cells recombine water from H-2 and O-2 thereby can power, for example, cars or houses with no direct carbon emission. In anion-exchange membrane fuel cells (AEMFCs), to reach high power densities, operating at high pH is an alternative to using large volumes of noble metals catalysts at the cathode, where the oxygen-reduction reaction occurs. However, the sluggish kinetics of the hydrogen-oxidation reaction (HOR) hinders upscaling despite promising catalysts. Here, the authors observe an unexpected ingress of B into Pd nanocatalysts synthesized by wet-chemistry, gaining control over this B-doping, and report on its influence on the HOR activity in alkaline conditions. They rationalize their findings using ab initio calculations of both H- and OH-adsorption on B-doped Pd. Using this "impurity engineering" approach, they thus design Pt-free catalysts as required in electrochemical energy conversion devices, for example, next generations of AEMFCs, that satisfy the economic and environmental constraints, that is, reasonable operating costs and long-term stability, to enable the "hydrogen economy."

키워드

atom probe tomographyhydrogen-oxidation reactionimpurity engineeringwet-chemical synthesisHYDROGEN OXIDATION REACTIONTOTAL-ENERGY CALCULATIONSAB-INITIOPALLADIUM NANOPARTICLESGOLD NANOPARTICLESSODIUM-BOROHYDRIDEFUEL-CELLSADSORPTIONEVOLUTIONPD
제목
Controlled Doping of Electrocatalysts through Engineering Impurities
저자
Kim, Se-HoYoo, Su-HyunShin, SangyongEl-Zoka, Ayman A.Kasian, OlgaLim, JoohyunJeong, JiwonScheu, ChristinaNeugebauer, JoergLee, HyunjooTodorova, MiraGault, Baptiste
DOI
10.1002/adma.202203030
발행일
2022-07
유형
Article
저널명
Advanced Materials
34
28