Electronic structure modification and N-doped carbon shell nanoarchitectonics of Ni3FeN@NC for overall water splitting performance evaluation

  • Jeong, Dong In
  • Choi, Hyung Wook
  • Woo, Seongwon
  • Yoo, Jung Hyeon
  • Kang, Donghyeon
  • ... Kang, Bong Kyun
  • 외 5명
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초록

Improvement of the sluggish kinetics of the overall water splitting catalyst through N-doping and the formation of a carbon shell makes it possible to achieve carbon neutrality and to synthesize catalysts that can replace noble metals. Surprisingly, in Ni3FeN@NC catalysts, transition metals received an extra electron due to doping with the nitrogen element, and thus the electron distribution probability at the Fermi energy level increased. In addition, pyridinic-N in the N-doped carbon shell can contribute to the improvement of catalyst performance. Density functional theory (DFT) calculations demonstrated the electrical performance by specifying the model of Ni3FeN@NC and were able to elucidate the mechanism of the catalytic reaction (OER and HER). The OER and HER overpotentials of the synthesized Ni3FeN@NC were confirmed to be 246 mV and 181 mV at 10 mV cm(-2) in 1.0 M KOH. It was proved that 98% of the performance was maintained even in overall water splitting performed for 24 h.

키워드

PRUSSIAN BLUEEFFICIENTELECTROCATALYSTMONOLAYERCATALYSTSGRAPHENENANORODSNITRIDE
제목
Electronic structure modification and N-doped carbon shell nanoarchitectonics of Ni3FeN@NC for overall water splitting performance evaluation
저자
Jeong, Dong InChoi, Hyung WookWoo, SeongwonYoo, Jung HyeonKang, DonghyeonKim, SeongMinLim, ByungkwonKim, Jung HoKim, Sang-WooKang, Bong KyunYoon, Dae Ho
DOI
10.1039/d2ta04817e
발행일
2022-08
유형
Article
저널명
Journal of Materials Chemistry A
10
31
페이지
16704 ~ 16713