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A Phosphorus-Bridged Spin Trigger for Oxygen Reduction

delete2025-12-16
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PRE
AI
W
Wu Wang
X
Xiaoyang Cheng *
H
Hongguan Li
M
Min-Le Li
L
Long Chen
J
Jian Yang *
Y
Yanxia Jiang *
R
Rui Huang *
孙世刚 (Shi‐Gang Sun)
DOI:10.1002/anie.202522880delete
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Abstract

Abstract

En 中文
Precise control over the spin degree of freedom of catalytic metal centers represents a significant challenge in enhancing the oxygen reduction reaction (ORR). In this work, we report a phosphorus(P)-bridged composite comprising Fe single atoms (SAs) and atomic clusters (ACs), FeSA/AC/PNC, wherein the FeSA-P-FeAC structure functions as an efficient electron channel and, more importantly, a spin trigger. This trigger induces a spin-state transition of FeII from low-spin (S = 0) to medium-spin (S = 1), as unequivocally deciphered by advanced spectroscopic and magnetic analyses. This spin-state reconstruction directly optimizes the reaction pathway by enhancing O2 adsorption and facilitating *OH desorption. The resulting catalyst exhibits exceptional oxygen reduction activity in both acidic and neutral media, with half-wave potentials of 0.852 and 0.831 V, respectively, and achieves a peak power density of 1.35 W cm−2 in proton exchange membrane fuel cells (PEMFCs). This strategy is universally effective for Co and Ni systems, establishing spin-state engineering as a general principle for designing high-performance non-precious metal catalysts.
Keywords:
Oxygen reduction reaction
Phosphorus-bridged
Proton exchange membrane fuel cells
Single-atom and cluster composites
Spin trigger

Journal

Angewandte Chemie-International Edition cover
Angewandte Chemie-International Edition
IF:
16.9
Papers:
5.6W
Citations:
53.0W

Organization

C
Chongqing University
Scholars:
5.1W
Papers: 4.1W
Citations: 6.0W
N
Northeastern University
Scholars:
2.4W
Papers: 1.5W
Citations: 3.0W
X
xiamen university
Scholars:
5.8W
Papers: 3.8W
Citations: 67
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