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电液动力学雾化:一种用于制备生物医学应用材料的通用工艺。

Electrohydrodynamic atomization: a versatile process for preparing materials for biomedical applications.

作者信息

Wu Yiquan, Clark Robert L

机构信息

Center for Biologically Inspired Materials & Material Systems, Duke University, Durham, NC 27708, USA.

出版信息

J Biomater Sci Polym Ed. 2008;19(5):573-601. doi: 10.1163/156856208784089616.

Abstract

Electrohydrodynamic atomization phenomena have increasingly attracted the attention of researchers who are interested in building micro- or nanometer architectures, such as fibers and encapsulated particles with a controllable microstructure. There are two main electrohydrodynamic atomization techniques: electrospraying and electrospinning. These techniques are unique processes in that they produce fibers and particles with dimensions that range from micrometers to nanometers depending on the processing parameters. This paper presents the principles, processes and potential biomedical applications for electrospraying and electrospinning of biomaterials. Both of these techniques offer great research opportunities. Emphasis will focus on the effects of processing parameters of electrohydrodynamic atomization on morphologies and microstructure of the final products. In addition, some potential applications are proposed based on the remarkable characteristics of the biomaterials generated using electrospraying and electrospinning.

摘要

电流体动力学雾化现象越来越吸引那些对构建微米或纳米级结构感兴趣的研究人员的关注,这些结构包括具有可控微观结构的纤维和封装颗粒。有两种主要的电流体动力学雾化技术:电喷雾和电纺丝。这些技术是独特的过程,因为它们根据加工参数产生尺寸范围从微米到纳米的纤维和颗粒。本文介绍了生物材料电喷雾和电纺丝的原理、过程及潜在的生物医学应用。这两种技术都提供了很好的研究机会。重点将放在电流体动力学雾化的加工参数对最终产品形态和微观结构的影响上。此外,基于使用电喷雾和电纺丝生成的生物材料的显著特性,还提出了一些潜在应用。

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