Template‐Directed Rapid Synthesis of Pd‐Based Ultrathin Porous Intermetallic Nanosheets for Efficient Oxygen Reduction

Jingchun Guo(Hunan University), Lei Gao(Hunan University), Xin Tan(Australian National University), Yuliang Yuan(Hunan University), Jeonghyeon Kim(Kyungpook National University), Yu Wang(Hunan University), Hui Wang(Hunan University), Y. J. Zeng(Shenzhen University), Sang‐Il Choi(Kyungpook National University), Sean C. Smith(Australian National University), Hongwen Huang(Hunan University)
Angewandte Chemie International Edition
March 10, 2021
Cited by 172

Abstract

Abstract Atomically ordered intermetallic nanoparticles exhibit improved catalytic activity and durability relative to random alloy counterparts. However, conventional methods with time‐consuming and high‐temperature syntheses only have rudimentary capability in controlling the structure of intermetallic nanoparticles, hindering advances of intermetallic nanocatalysts. We report a template‐directed strategy for rapid synthesis of Pd‐based (PdM, M=Pb, Sn and Cd) ultrathin porous intermetallic nanosheets (UPINs) with tunable sizes. This strategy uses preformed seeds, which act as the template to control the deposition of foreign atoms and the subsequent interatomic diffusion. Using the oxygen reduction reaction (ORR) as a model reaction, the as‐synthesized Pd 3 Pb UPINs exhibit superior activity, durability, and methanol tolerance. The favored geometrical structure and interatomic interaction between Pd and Pb in Pd 3 Pb UPINs are concluded to account for the enhanced ORR performance.


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