Nano-Micro Letters (Feb 2023)

Mutual Self-Regulation of d-Electrons of Single Atoms and Adjacent Nanoparticles for Bifunctional Oxygen Electrocatalysis and Rechargeable Zinc-Air Batteries

  • Sundaram Chandrasekaran,
  • Rong Hu,
  • Lei Yao,
  • Lijun Sui,
  • Yongping Liu,
  • Amor Abdelkader,
  • Yongliang Li,
  • Xiangzhong Ren,
  • Libo Deng

DOI
https://doi.org/10.1007/s40820-023-01022-8
Journal volume & issue
Vol. 15, no. 1
pp. 1 – 18

Abstract

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Highlights A new class of γ-cyclodextrin based metal–organic framework -derived strategy was used to fabricate highly active M–N-C catalysts containing both single-atom sites and nanoparticles. The obtained Co@C-CoNC exhibits remarkable bifunctional oxygen reduction (ORR)/oxygen evolution reactions (OER) performance, which further delivered a high power density and excellent cyclic stability in rechargeable zinc-air batteries. Density functional theory calculation suggests that the mutual self-regulation of d-electron density of both Co NP and Co SAC conjointly reduce the reaction energy barriers and thus boost the ORR/OER kinetics through their fast adsorption/desorption ability of reaction intermediates.

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