High-entropy-alloy nanoparticles with 21 ultra-mixed elements for efficient photothermal conversion

被引:1
|
作者
Yijun Liao [1 ]
Yixing Li [1 ]
Rongzhi Zhao [1 ,2 ]
Jian Zhang [2 ]
Lizhong Zhao [2 ]
Lianze Ji [1 ,2 ]
Zhengyu Zhang [1 ]
Xiaolian Liu [2 ]
Gaowu Qin [1 ]
Xuefeng Zhang [1 ,2 ]
机构
[1] Key Laboratory for Anisotropy and Texture of Materials (MOE), School of Materials Science and Engineering,Northeastern University
[2] Institute of Advanced Magnetic Materials,College of Materials and Environmental Engineering,Hangzhou Dianzi University
基金
中央高校基本科研业务费专项资金资助; 中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
TG139 [其他特种性质合金]; TB383.1 [];
学科分类号
070205 ; 080501 ; 080502 ; 1406 ;
摘要
Multi-metallic nanoparticles have been proven to be an efficient photothermal conversion material, for which the optical absorption can be broadened through the interband transitions(IBTs), but it remains a challenge due to the strong immiscibility among the repelling combinations. Here, assisted by an extremely high evaporation temperature, ultra-fast cooling and vapor-pressure strategy, the arc-discharged plasma method was employed to synthesize ultra-mixed multi-metallic nanoparticles composed of 21 elements(FeCoNiCrYTiVCuAlNbMoTaWZnCdPbBiAgInMnSn), in which the strongly repelling combinations were uniformly distributed. Due to the reinforced lattice distortion effect and excellent IBTs, the nanoparticles can realize an average absorption of >92% in the entire solar spectrum(250 to 2500 nm). In particular, the 21-element nanoparticles achieve a considerably high solar steam efficiency of nearly 99%under one solar irradiation, with a water evaporation rate of 2.42 kg m-2h-1, demonstrating a highly efficient photothermal conversion performance. The present approach creates a new strategy for uniformly mixing multi-metallic elements for exploring their unknown properties and various applications.
引用
收藏
页码:124 / 134
页数:11
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