General synthesis of high-entropy alloy and ceramic nanoparticles in nanoseconds

被引:0
|
作者
Bing Wang
Cheng Wang
Xiwen Yu
Yuan Cao
Linfeng Gao
Congping Wu
Yingfang Yao
Zhiqun Lin
Zhigang Zou
机构
[1] Nanjing University,Eco
[2] Georgia Institute of Technology,materials and Renewable Energy Research Center (ERERC), School of Physics
[3] Nanjing University,School of Materials Science and Engineering
[4] Kunshan Innovation Institute of Nanjing University,Jiangsu Key Laboratory for Nano Technology, National Laboratory of Solid State Microstructures
[5] Nanjing University,College of Engineering and Applied Sciences
[6] The Chinese University of Hong Kong,School of Science and Engineering
[7] Shenzhen,Macau Institute of Systems Engineering
[8] Macau University of Science and Technology,undefined
来源
Nature Synthesis | 2022年 / 1卷
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摘要
High-entropy materials, which include high-entropy alloys and high-entropy ceramics, show promise for their use in many fields, yet a robust synthesis strategy is lacking. Here we present a simple and general approach, laser scanning ablation, to synthesize a library of high-entropy alloy and ceramic nanoparticles. The laser scanning ablation method takes only five nanoseconds per pulse to ablate the corresponding nanoparticle precursors at atmospheric temperature and pressure. The ultrarapid process ensures that dissimilar metallic elements combine regardless of their thermodynamic solubility. As a laser pulse confines energy to the desired microregions, the laser scanning ablation method renders a high-entropy material nanoparticle loading on various substrates, which include thermally sensitive substrates. Applied as electrocatalysts for overall water splitting, the as-prepared high-entropy material nanoparticles can achieve an overpotential of 185 mV @ 10 mA cm–2. This versatile strategy enables the preparation of materials useful for a range of fields, such as biomedicine, catalysis, energy storage and sensors.
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页码:138 / 146
页数:8
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