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Title: Highly distorted platinum nanorods for high-efficiency fuel cell catalysis
Authors: Bu, L
Huang, B 
Zhu, Y
Ning, F
Zhou, X
Huang, X
Issue Date: Oct-2020
Source: CCS chemistry, Oct. 2020, v. 2, no. 5, p. 401-412
Abstract: Different from studies where less defective platinum (Pt)-based nanomaterials have been widely used to improve the catalysis of the oxygen reduction reaction (ORR) for proton-exchange membrane fuel cells (PEMFCs), herein we have demonstrated that a new class of Pt nanorods (NRs) with a highly distorted configuration can be applied as an advanced, high-efficiency fuel cell catalyst, as transformed from spongy Pt-tellurium NRs (PtTe2 NRs) through sequential chemical and electrochemical aging procedures. The resulting highly distorted Pt NRs exhibit excellent ORR-specific and mass activities of 4.70mA cm-2 and 2.77 A mg-1 Pt at 0.90 V versus the reversible hydrogen electrode (RHE), which are 18.8 and 16.3 times higher than those of commercial Pt/C catalyst, and the mass activity is 6.3 times higher than 2020 U.S. Department of Energy target. Additionally, negligible activity decays were observed after 30,000 cycles. The high ORR performance endows these unique Pt NRs with enhanced activity and lifetimes for practical fuel cell catalysis in comparison with commercial Pt/C, which is consistent with the experimental results. It has been demonstrated that the anomaly of strong electron-lattice coupling suppresses Coulombic repulsion for barrier-free electron transfer while concurrently exposing a large number of active sites, which is a key to superior high-performance fuel cell reactions.
Keywords: Distortion
Fuel cell catalysis
Nanorod
Oxygen reduction reaction
Platinum
Publisher: Chinese Chemical Society
Journal: CCS chemistry 
EISSN: 2096-5745
DOI: 10.31635/ccschem.020.201900123
Rights: © 2020 Chinese Chemical Society
Articles at the CCS Chemistry are published under a Creative Commons Attribution-NonCommercial 3.0 Unported license (CC BY-NC 3.0) (https://creativecommons.org/licenses/by-nc/3.0/).
The following publication Bu, L., Huang, B., Zhu, Y., Ning, F., Zhou, X., & Huang, X. (2020). Highly distorted platinum nanorods for high-efficiency fuel cell catalysis. CCS Chemistry, 2(5), 401-412 is available at https://doi.org/10.31635/ccschem.020.201900123.
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