超短脉冲
过渡金属
材料科学
激光器
脉冲激光器
冲击波
光电子学
纳米技术
光学
化学
物理
热力学
催化作用
生物化学
作者
Ziyuan Xu,Qiao Chen,Xiao Han,Jiaxuan Wang,Pan Wang,Tao Zheng,Sin‐Yi Pang,Jincheng Wang,Hejun Li,Zhenhai Xia,Jianhua Hao
出处
期刊:Nano Letters
[American Chemical Society]
日期:2024-09-20
卷期号:24 (39): 12254-12262
被引量:8
标识
DOI:10.1021/acs.nanolett.4c03410
摘要
Transition metal phosphide nanoparticles (TMP NPs) represent a promising class of nanomaterials in the field of energy; however, a universal, time-saving, energy-efficient, and scalable synthesis method is currently lacking. Here, a facile synthesis approach is first introduced using a pulsed laser shock (PLS) process mediated by metal–organic frameworks, free of any inert gas protection, enabling the synthesis of diverse TMP NPs. Additionally, through thermodynamic calculations and experimental validation, the phase selection and competition behavior between phosphorus and oxygen have been elucidated, dictated by the redox potential and electronegativity. The resulting composites exhibit a balanced performance and extended durability. When employed as electrocatalysts for overall water splitting, the as-constructed electrolyzer achieves a low cell voltage of 1.54 V at a current density of 10 mA cm–2. This laser method for phosphide synthesis provides clear guidelines and holds potential for the preparation of nanomaterials applicable in catalysis, energy storage, biosensors, and other fields.
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