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An Fe-N-C catalyst with an FeN4 active moiety has gained ever-increasing attention for the oxygen reduction reaction (ORR); however, the catalytic performance is sluggish in acidic solutions and the regulation is still a challenge. Herein, Fe-Mo dual-metal sites were constructed to tune the ORR activity of a mononuclear Fe site embedded in porous nitrogen-doped carbon. The cracking of O-O bonds is much more facile on the Fe-Mo atomic pair site due to the preferred bridge-cis adsorption model of oxygen molecules. The downshift of the Fe d band center when an Mo atom is introduced to the FeNx configuration optimizes the absorption-desorption behavior of ORR intermediates in the FeMoN6 active moiety, thus boosting the catalytic performance. The construction of dual-metal atom sites to regulate the catalytically active moiety paves the way for boosting the electrocatalytic performance of other similar non-precious-metal catalysts.
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Zhu et al. (Tue,) studied this question.
synapsesocial.com/papers/69d89c7505ee2ba81dbefe59 — DOI: https://doi.org/10.1021/acs.nanolett.2c03623
Peng Zhu
Rice University
Xiang Xiong
Central South University
Xiaolu Wang
Xi'an University of Science and Technology
Nano Letters
Tsinghua University
Central South University
Beijing Normal University
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