Please use this identifier to cite or link to this item: https://hdl.handle.net/10356/169200
Title: Epitaxial growth of Pt–Pd bimetallic heterostructures for the oxygen reduction reaction
Authors: Zhang, Lian Ying
Zeng, Tiantian
Zheng, Linwei
Wang, Yanrui
Yuan, Weiyong
Niu, Mang
Guo, Chun Xian
Cao, Dapeng
Li, Chang Ming
Keywords: Science::Chemistry
Issue Date: 2023
Source: Zhang, L. Y., Zeng, T., Zheng, L., Wang, Y., Yuan, W., Niu, M., Guo, C. X., Cao, D. & Li, C. M. (2023). Epitaxial growth of Pt–Pd bimetallic heterostructures for the oxygen reduction reaction. Advanced Powder Materials, 2(4), 100131-. https://dx.doi.org/10.1016/j.apmate.2023.100131
Journal: Advanced Powder Materials 
Abstract: It is of great importance to design highly active and stable electrocatalysts with low Pt loading to improve the sluggish kinetics of oxygen reduction reaction (ORR) for fuel cells. Herein, we report an epitaxial growth of a Pt–Pd bimetallic heterostructure with a Pt loading as low as 8.02 ​wt%. Both experimental studies and theoretical calculations confirm that the heterointerfaces play a major role in charge redistribution, which accelerates electron transfer from Pd to Pt, contributing to downshifting the d-band center of Pd and consequently greatly weakening the O adsorption energy for a critical optimal adsorption configuration of O∗ on the heterointerface. In particular, the adsorbed O∗, an intermediate in a bridge mode between adjacent Pt and Pd atoms, has a relative low adsorption energy, which easily forms H2O to escape for releasing the active sites toward ORR. The Pt–Pd heterostructured catalyst presents the highest mass activity of 6.06 A·mg−1Pt among all reported Pt–Pd alloyed or composited catalysts, which is 26.4 times of the sample Pt/C (0.23 A·mg−1Pt). Further, the fuel cell assembled by the electrocatalyst shows a current density of 1.23 ​A·cm−2 at 0.6 ​V and good stability for over 100 ​h.
URI: https://hdl.handle.net/10356/169200
ISSN: 2772-834X
DOI: 10.1016/j.apmate.2023.100131
Schools: School of Chemistry, Chemical Engineering and Biotechnology 
Rights: © 2023 Central South University. Publishing services by Elsevier B.V. on behalf of KeAi Communications Co. Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
Fulltext Permission: open
Fulltext Availability: With Fulltext
Appears in Collections:CCEB Journal Articles

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