Microfluidic Technology: A New Strategy for Controllable Synthesis of Metal Nanomaterials

IF 3.5 4区 化学 Q2 ELECTROCHEMISTRY
Dongtang Zhang, Shuang Jia, Zhao Jin, Jiahui Bu, Guangsheng Guo, Jiguang Deng, Xiayan Wang
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Abstract

Microfluidic technology has exhibited remarkable potential and significance in the precise preparation of multifunctional nanomaterials. Thanks to its small reaction volume and superior hydrodynamic control, this technology has emerged as an essential tool for synthesizing multifunctional nanomaterials with precisely tunable microstructures and morphologies. This paper reviews the latest advancements in the controllable synthesis of metal nano-electrocatalysts utilizing microfluidic technology. Firstly, it systematically elucidates the fundamental principles of microfluidic synthesis technology and its distinctive parameter control strategies. Subsequently, it delves deeply into the mechanism of reaction enhancement in the synthesis process of metal nanoparticles in the microfluidic environment. Through the analysis of specific cases, the extensive application prospects and distinctive advantages of the microfluidic system in the preparation of nano-electrocatalysts have been further elucidated. Finally, it summarizes and looks forward to the challenges and future development directions that microfluidic technology faces in the synthesis of nano-electrocatalysts. This review aims to provide valuable insights into the application of microfluidic synthesis technology in the morphology design and technological innovation of electrocatalysts.

Abstract Image

微流控技术:金属纳米材料可控合成的新策略
微流控技术在精密制备多功能纳米材料方面显示出显著的潜力和意义。由于其小的反应体积和优越的流体动力学控制,该技术已成为合成具有精确可调微结构和形态的多功能纳米材料的重要工具。本文综述了利用微流控技术合成金属纳米电催化剂的最新研究进展。首先,系统阐述了微流控合成技术的基本原理及其独特的参数控制策略。随后,深入探讨了微流控环境下金属纳米颗粒合成过程中反应增强的机理。通过具体案例分析,进一步阐明了微流控系统在纳米电催化剂制备中的广泛应用前景和独特优势。最后对微流控技术在纳米电催化剂合成中面临的挑战和未来发展方向进行了总结和展望。本文综述了微流控合成技术在电催化剂形态设计和工艺创新中的应用。
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来源期刊
ChemElectroChem
ChemElectroChem ELECTROCHEMISTRY-
CiteScore
7.90
自引率
2.50%
发文量
515
审稿时长
1.2 months
期刊介绍: ChemElectroChem is aimed to become a top-ranking electrochemistry journal for primary research papers and critical secondary information from authors across the world. The journal covers the entire scope of pure and applied electrochemistry, the latter encompassing (among others) energy applications, electrochemistry at interfaces (including surfaces), photoelectrochemistry and bioelectrochemistry.
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