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Microfluidic hydrodynamic focusing for synthesis of nanomaterials
Nano Today ( IF 13.2 ) Pub Date : 2016-12-01 05:46:53
Mengqian Lu, Adem Ozcelik, Christopher L. Grigsby, Yanhui Zhao, Feng Guo, Kam W. Leong, Tony Jun Huang

Microfluidics expands the synthetic space such as heat transfer, mass transport, and reagent consumption to conditions not easily achievable in conventional batch processes. Hydrodynamic focusing in particular enables the generation and study of complex engineered nanostructures and new materials systems. In this review, we present an overview of recent progress in the synthesis of nanostructures and microfibers using microfluidic hydrodynamic focusing techniques. Emphasis is placed on distinct designs of flow focusing methods and their associated mechanisms, as well as their applications in material synthesis, determination of reaction kinetics, and study of synthetic mechanisms.

中文翻译:

微流控流体动力学合成纳米材料

微流体技术将诸如传热,传质和试剂消耗之类的合成空间扩展到了常规分批工艺难以达到的条件。特别地,流体动力聚焦使得能够生成和研究复杂的工程纳米结构和新材料系统。在这篇综述中,我们概述了使用微流体流体动力聚焦技术合成纳米结构和微纤维的最新进展。重点放在流动聚焦方法及其相关机理的独特设计上,以及它们在材料合成,反应动力学测定和合成机理研究中的应用。
更新日期:2016-12-01
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