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金属-氮-碳簇修饰的碳化钛是一种耐用且廉价的氧还原反应电催化剂。

Metal-Nitrogen-Carbon Cluster-Decorated Titanium Carbide is a Durable and Inexpensive Oxygen Reduction Reaction Electrocatalyst.

作者信息

Beom Cho Sung, He Cheng, Sankarasubramanian Shrihari, Singh Thind Arashdeep, Parrondo Javier, Hachtel Jordan A, Borisevich Albina Y, Idrobo Juan-Carlos, Xie Jing, Ramani Vijay, Mishra Rohan

机构信息

Department of Mechanical Engineering and Materials Science, Washington University in St. Louis, St. Louis, Missouri, 63130, USA.

Virtual Engineering Center, Technology Convergence Division, Korea Institute of Ceramic Engineering and Technology (KICET), Jinju, 52851, South Korea.

出版信息

ChemSusChem. 2021 Nov 4;14(21):4680-4689. doi: 10.1002/cssc.202101341. Epub 2021 Sep 22.

Abstract

Clusters of nitrogen- and carbon-coordinated transition metals dispersed in a carbon matrix (e. g., Fe-N-C) have emerged as an inexpensive class of electrocatalysts for the oxygen reduction reaction (ORR). Here, it was shown that optimizing the interaction between the nitrogen-coordinated transition metal clusters embedded in a more stable and corrosion-resistant carbide matrix yielded an ORR electrocatalyst with enhanced activity and stability compared to Fe-N-C catalysts. Utilizing first-principles calculations, an electrostatics-based descriptor of catalytic activity was identified, and nitrogen-coordinated iron (FeN ) clusters embedded in a TiC matrix were predicted to be an efficient platinum-group metal (PGM)-free ORR electrocatalyst. Guided by theory, selected catalyst formulations were synthesized, and it was demonstrated that the experimentally observed trends in activity fell exactly in line with the descriptor-derived theoretical predictions. The Fe-N-TiC catalyst exhibited enhanced activity (20 %) and durability (3.5-fold improvement) compared to a traditional Fe-N-C catalyst. It was posited that the electrostatics-based descriptor provides a powerful platform for the design of active and stable PGM-free electrocatalysts and heterogenous single-atom catalysts for other electrochemical reactions.

摘要

分散在碳基质(如Fe-N-C)中的氮和碳配位过渡金属簇已成为一类用于氧还原反应(ORR)的廉价电催化剂。在此,研究表明,优化嵌入更稳定且耐腐蚀的碳化物基质中的氮配位过渡金属簇之间的相互作用,可得到一种与Fe-N-C催化剂相比具有更高活性和稳定性的ORR电催化剂。利用第一性原理计算,确定了一种基于静电学的催化活性描述符,并预测嵌入TiC基质中的氮配位铁(FeN)簇是一种高效的无铂族金属(PGM)ORR电催化剂。在理论指导下,合成了选定的催化剂配方,并证明实验观察到的活性趋势与基于描述符得出的理论预测完全一致。与传统的Fe-N-C催化剂相比,Fe-N-TiC催化剂表现出更高的活性(提高20%)和耐久性(提高3.5倍)。有人认为,基于静电学的描述符为设计用于其他电化学反应的活性和稳定的无PGM电催化剂及非均相单原子催化剂提供了一个强大的平台。

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