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电流体动力学雾化:一种生长连续自支撑聚合物纤维的方法。

Electrohydrodynamic atomization: an approach to growing continuous self-supporting polymeric fibers.

作者信息

Jayasinghe S N, Sullivan A C

机构信息

Department of Materials, Queen Mary, University of London, Mile End Road, London E1 4NS, UK.

出版信息

J Phys Chem B. 2006 Feb 16;110(6):2522-8. doi: 10.1021/jp0555089.

Abstract

The investigation presented in this paper illustrates a technique for growing in-situ polymerized networks, forming scaffold-like structures usually formed by means of electrospinning. The technique of jet atomization employing electrohydrodynamics is a manifestation of electrospinning. However, we show for the first time that using this technique where individual droplets are generated, a continuous self-supporting submicrometer web-like structure can be grown whereby fragments of the structure are delivered in the droplets and polymerize on the surface of the growing structure via polycondensation. The development of these growing fibers into web structures is a direct result of the processing route together with the excellent tailor-made cross-linking nature of the resin. An operational map is generated to identify a parametric space in which the stable cone-jet mode of electrohydrodynamic atomization prevails for generating the finest droplets. A statistical analysis on the formed fibers for a given time and electrospray condition is presented together with optical micrographs of the structure, which concludes the discussion in this paper.

摘要

本文所展示的研究阐述了一种用于生长原位聚合网络的技术,该技术能形成通常通过静电纺丝方式形成的支架状结构。采用电流体动力学的喷射雾化技术是静电纺丝的一种表现形式。然而,我们首次表明,使用这种产生单个液滴的技术,可以生长出连续的自支撑亚微米级网状结构,结构片段通过液滴传递,并通过缩聚在生长结构的表面聚合。这些生长纤维发展成网状结构是加工路线以及树脂优异的定制交联特性的直接结果。生成了一个操作图,以确定电流体动力学雾化的稳定锥射流模式占主导以产生最细液滴的参数空间。给出了在给定时间和电喷雾条件下对形成纤维的统计分析以及结构的光学显微镜照片,以此结束本文的讨论。

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