Oxygen-Reconstituted Active Species of Single-Atom Cu Catalysts for Oxygen Reduction Reaction
Author(s) -
Liu Yang,
Haoxiang Xu,
Huibing Liu,
Xiaofei Zeng,
Daojian Cheng,
Yan Huang,
Lirong Zheng,
Rui Cao,
Dapeng Cao
Publication year - 2020
Publication title -
research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.8
H-Index - 16
ISSN - 2639-5274
DOI - 10.34133/2020/7593023
Subject(s) - catalysis , oxygen reduction reaction , electrocatalyst , oxygen , chemistry , oxygen reduction , active oxygen , inorganic chemistry , electrode , electrochemistry , organic chemistry
Identification of an active center of catalysts under realistic working conditions of oxygen reduction reaction (ORR) still remains a great challenge and unclear. Herein, we synthesize the Cu single atom embedded on nitrogen-doped graphene-like matrix electrocatalyst (abbreviated as SA-Cu/NG). The results show that SA-Cu/NG possesses a higher ORR capability than 20% Pt/C at alkaline solution while the inferior activity to 20% Pt/C at acidic medium. Based on the experiment and simulation calculation, we identify the atomic structure of Cu-N 2 C 2 in SA-Cu/NG and for the first time unravels that the oxygen-reconstituted Cu-N 2 C 2 -O structure is really the active species of alkaline ORR, while the oxygen reconstitution does not happen at acidic medium. The finding of oxygen-reconstituted active species of SA-Cu/NG at alkaline media successfully unveils the bottleneck puzzle of why the performance of ORR catalysts at alkaline solution is better than that at acidic media, which provides new physical insight into the development of new ORR catalysts.
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