| Literature DB >> 29982010 |
Yuyan Gong1, Xuehua Liu1, Yangyang Gong1, Diben Wu1, Binghui Xu1, Lei Bi1, Lian Ying Zhang2, X S Zhao3.
Abstract
Unique and novel Pd4Sn nanochain networks were successfully synthesized with an average diameter of 5 nm, rendering a modified Pd electronic structure with rich defects such as atomic corners, steps or ledges as catalytic active sites for great enhancement of charge transfer and electrode kinetics. The prepared Pd4Sn nanochain networks held an electrochemically active surface area as high as 119.40 m2 g-1, and exhibited higher catalytic activity and stability toward formic acid oxidation compared with Pd3Sn nanochain networks, Pd5Sn nanochain networks, Pd4Sn dendrites and Pd/C. The fundamental insight of the enhancement mechanism is discussed, and this work offers a novel, less expensive but highly active catalyst for direct formic acid fuel cells.Entities:
Keywords: Active sites; Electrocatalyst; Formic acid oxidation reaction; Fuel cells; Pd(4)Sn nanochain networks
Year: 2018 PMID: 29982010 DOI: 10.1016/j.jcis.2018.06.074
Source DB: PubMed Journal: J Colloid Interface Sci ISSN: 0021-9797 Impact factor: 8.128