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通过电动力学雾化法控制空心聚合物微球的厚度。

Controlling the thickness of hollow polymeric microspheres prepared by electrohydrodynamic atomization.

机构信息

Department of Mechanical Engineering, University College London, Torrington Place, London WC1E 7JE, UK.

出版信息

J R Soc Interface. 2010 Aug 6;7 Suppl 4(Suppl 4):S451-60. doi: 10.1098/rsif.2010.0092.focus. Epub 2010 Jun 2.

Abstract

In this study, the ability to control the shell thickness of hollow polymeric microspheres prepared using electrohydrodynamic processing at ambient temperature was investigated. Polymethylsilsesquioxane (PMSQ) was used as a model material for the microsphere shell encapsulating a core of liquid perfluorohexane (PFH). The microspheres were characterized by Fourier transform infrared spectroscopy and optical and electron microscopy, and the effects of the processing parameters (flow-rate ratio, polymer concentration and applied voltage) on the mean microsphere diameter (D) and shell thickness (t) were determined. It was found that the mean diameters of the hollow microspheres could be controlled in the range from 310 to 1000 nm while the corresponding mean shell thickness varied from 40 to 95 nm. The results indicate that the ratio D : t varied with polymer concentration, with the largest value of approximately 10 achieved with a solution containing 18 wt% of the polymer, while the smallest value (6.6) was obtained at 36 wt%. For polymer concentrations above 63 wt%, hollow microspheres could not be generated, but instead PMSQ fibres encapsulating PFH liquid were obtained.

摘要

在本研究中,研究了在环境温度下使用电动力学处理制备具有空心聚合物微球时控制壳层厚度的能力。聚甲基倍半硅氧烷(PMSQ)被用作封装液体全氟己烷(PFH)核的微球壳的模型材料。通过傅里叶变换红外光谱和光学及电子显微镜对微球进行了表征,并确定了加工参数(流速比、聚合物浓度和施加电压)对平均微球直径(D)和壳层厚度(t)的影响。结果发现,空心微球的平均直径可以控制在 310 至 1000nm 的范围内,而相应的平均壳层厚度则在 40 至 95nm 之间变化。结果表明,D:t 比随聚合物浓度而变化,在聚合物浓度为 18wt%的溶液中,D:t 比约为 10,达到最大值,而在聚合物浓度为 36wt%时,D:t 比最小(6.6)。对于聚合物浓度高于 63wt%,无法生成空心微球,而是得到了封装 PFH 液体的 PMSQ 纤维。

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