Turning Harmful Deposition of Metal Impurities into Activation of Nitrogen-Doped Carbon Catalyst toward Durable Electrochemical CO2 Reduction

  • Kim, Chanyeon
  • Choe, Yoong-Kee
  • Won, Da Hye
  • Lee, Ung
  • Oh, Hyung-Suk
  • ... Kim, Woong
  • 외 5명
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31

초록

Electrochemical CO2 reduction is typically operated under highly refined electrolyte conditions. However, trace amounts of metal impurities exist even in ultrapure electrolyte solutions, causing a fatal deactivation of the catalysts. To address this issue, various efforts have been made to prevent the harmful deposition of metal impurities on the catalyst. Herein, we designed a new system where metal impurities are utilized as activators. We demonstrated "self-activation" of the N-doped carbon catalyst in the presence of Fe impurity with remarkable stability for 120 h. The origin of the self-activation was the selective adsorption of Fe impurity forming highly dispersed Fe sites through Fe-N interactions. The correlations between the self-activation and number of N sites and their moieties were investigated and further generalized into other metals, such as Ni, Zn, and Cu. This novel general strategy has enormous impact on design of durable catalysts for various electrochemical reactions suffering from deactivation by metal impurities.

키워드

OXYGEN REDUCTIONPULSED ELECTROREDUCTIONDIOXIDE REDUCTIONACTIVE-SITESELECTROLYTEELECTROCATALYSISDEACTIVATIONSIMULATIONMEMBRANESETHYLENE
제목
Turning Harmful Deposition of Metal Impurities into Activation of Nitrogen-Doped Carbon Catalyst toward Durable Electrochemical CO2 Reduction
저자
Kim, ChanyeonChoe, Yoong-KeeWon, Da HyeLee, UngOh, Hyung-SukLee, Dong KiChoi, Chang HyuckYoon, SunghoKim, WoongHwang, Yun JeongMin, Byoung Koun
DOI
10.1021/acsenergylett.9b01581
발행일
2019-09
유형
Article
저널명
ACS Energy Letters
4
9
페이지
2343 ~ 2350