Liquid metal for high-entropy alloy nanoparticles synthesis

被引:0
|
作者
Guanghui Cao
Jingjing Liang
Zenglong Guo
Kena Yang
Gang Wang
Huiliu Wang
Xuhao Wan
Zeyuan Li
Yijia Bai
Yile Zhang
Junlin Liu
Yanpeng Feng
Zhenying Zheng
Cai Lu
Guangzhi He
Zeyou Xiong
Ze Liu
Shengli Chen
Yuzheng Guo
Mengqi Zeng
Junhao Lin
Lei Fu
机构
[1] Wuhan University,College of Chemistry and Molecular Sciences
[2] Wuhan University,The Institute for Advanced Studies
[3] Southern University of Science and Technology,Department of Physics and Shenzhen Key Laboratory of Advanced Quantum Functional Materials and Devices
[4] Wuhan University,School of Electrical Engineering and Automation
[5] Wuhan University,School of Power and Mechanical Engineering
[6] Inner Mongolia University of Technology,College of Chemical Engineering
[7] Songshan Lake Materials Laboratory,Bay Area Center for Electron Microscopy
[8] Wuhan University,Department of Engineering Mechanics, School of Civil Engineering
[9] Quantum Science Center of Guangdong–Hong Kong–Macao Greater Bay Area (Guangdong),undefined
来源
Nature | 2023年 / 619卷
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摘要
High-entropy alloy nanoparticles (HEA-NPs) show great potential as functional materials1–3. However, thus far, the realized high-entropy alloys have been restricted to palettes of similar elements, which greatly hinders the material design, property optimization and mechanistic exploration for different applications4,5. Herein, we discovered that liquid metal endowing negative mixing enthalpy with other elements could provide a stable thermodynamic condition and act as a desirable dynamic mixing reservoir, thus realizing the synthesis of HEA-NPs with a diverse range of metal elements in mild reaction conditions. The involved elements have a wide range of atomic radii (1.24–1.97 Å) and melting points (303–3,683 K). We also realized the precisely fabricated structures of nanoparticles via mixing enthalpy tuning. Moreover, the real-time conversion process (that is, from liquid metal to crystalline HEA-NPs) is captured in situ, which confirmed a dynamic fission–fusion behaviour during the alloying process.
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页码:73 / 77
页数:4
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