铜业工程:2026(2):66-75
←前一篇   |   后一篇→
本文二维码信息
码上扫一扫!
CuS纳米颗粒的合成与应用研究进展
徐磊1, 杨智1, 周孜炫2
(1.成都华创兴科科技发展有限公司,四川 成都 610041;2.西京学院 电子信息学院,陕西 西安 710123)
Research Progress in Synthesis and Application of CuS Nanoparticles
XU Lei1, YANG Zhi1, ZHOU Zixuan2
(1.Chengdu Huachuang Xingke Technology Development Co.,Ltd.,Chengdu 610041,China; 2.School of Electronic Information,Xijing University,Xi'an 710123,China)
摘要
图/表
参考文献
本刊相似文献
All Journals 相似文献
All Journals 引证文献
本文已被:浏览 1367次   下载 346
投稿时间:2025-03-25    修订日期:2026-01-27
中文摘要: CuS纳米颗粒因其独特的光学、电学和催化性能,在多个领域受到广泛关注。本文系统综述了CuS纳米颗粒材料的合成方法、物理性质及其在各领域的应用。首先,系统阐述了CuS的三种主要合成方法(包括水/溶剂热法、化学沉淀法、微波辅助法)的基本原理及研究进展,并总结了各方法的优缺点; 其次,从晶体结构等方面介绍了CuS纳米颗粒材料在光学、电学、催化及生物相容性方面的独特性质; 再次,进一步总结了其在生物医学、环境治理及超级电容器领域的研究进展,主要探讨了在光热治疗、药物递送、有机污染物降解及超级电容器电极材料领域的应用; 最后对CuS纳米颗粒材料在各领域发展所面临的诸多挑战进行了归纳,并对未来研究方向进行了展望,指出通过优化合成方法,深入理解其性质并解决应用中的关键问题,是推动该材料深入研究与广泛应用的重要方向,以期为相关研究提供参考与启示。
Abstract:CuS nanoparticles have attracted extensive attention in many fields due to their unique optical, electrical and catalytic properties. This review systematically reviewed synthesis methods, physical properties, and applications of CuS nanoparticle materials in various fields. Firstly, the basic principles and research progress of three main synthesis methods of CuS, including water/solvothermal method, chemical precipitation method and microwave-assisted method, were systematically summarized, and the advantages and disadvantages of each method were summarized. Secondly, the unique optical, electrical, catalytic and biocompatibility of CuS nanoparticles stemmed from the crystal structure of CuS nanoparticles were introduced. Furthermore, the research progress in fields of biomedicine, environment and supercapacitors based on their unique physical properties were summarized. Applications in photothermal therapy, drug delivery carriers, organic pollutant degradation and supercapacitor electrode materials were mainly discussed. Finally, the challenges faced by development of CuS nanoparticle materials in various fields were summarized, and future research directions were prospected. It was pointed out that optimizing synthesis method and deep understanding of properties are key factors in effective applications of the materials. CuS nanoparticle materials were expected to play a greater role in future scientific research and industrial applications. This review provided some references and inspirations for promoting the in-depth research and wide application of these materials in various fields.
文章编号:20250325002     中图分类号:TB383
基金项目:陕西省自然科学基础研究计划项目(2024JC-YBMS-342)
引用文本: 徐 磊,杨智,周孜炫.CuS纳米颗粒的合成与应用研究进展[J].铜业工程,2026,(2):66-75