材料科学
惰性气体
纳米技术
纳米颗粒
结晶
电化学
电催化剂
化学工程
电极
复合材料
化学
物理化学
工程类
作者
Shu Fu,Guo‐Xing Chen,Hu Guo,Sinan Liu,Mengyang Yan,Yu Lou,Huiqiang Ying,Zhongzheng Yao,Yang Ren,Wei Jiang,He Zhu,Horst Hahn,Tao Feng,Si Lan
出处
期刊:Small
[Wiley]
日期:2023-04-20
卷期号:19 (33): e2300721-e2300721
被引量:18
标识
DOI:10.1002/smll.202300721
摘要
Abstract Topologically disordered metallic glass nanoparticles (MGNPs) with highly active and tailorable surface chemistries have immense potential for functional uses. The synthesis of free‐standing MGNPs is crucial and intensively pursued because their activity strongly depends on their exposed surfaces. Herein, a novel laser‐evaporated inert‐gas condensation method is designed and successfully developed for synthesizing free‐standing MGNPs without substrates or capping agents, which is implemented via pulse laser‐induced atomic vapor deposition under an inert helium atmosphere. In this way, the metallic atoms vaporized from the targets collide with helium atoms and then condense into short‐range‐order (SRO) clusters, which mutually assemble to form the MGNPs. Using this method, free‐standing Pd 40 Ni 40 P 20 MGNPs with a spherical morphology are synthesized, which demonstrates satisfactory electrocatalytic activity and durability in oxygen reduction reactions. Moreover, local structure investigations using synchrotron pair distribution function techniques reveal the transformation of SRO cluster connection motifs of the MGNPs from face‐sharing to edge‐sharing modes during cyclic voltammetry cycles, which enhances the electrochemical stability by blocking crystallization. This approach provides a general strategy for preparing free‐standing MGNPs with high surface activities, which may have widespread functional applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI