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通过虚拟拉伸技术制备的椭球形PPDL-PTHF共聚物颗粒的预测形状

Predictive Shapes of Ellipsoid PPDL-PTHF Copolymer Particles Prepared by the Phantom Stretching Technique.

作者信息

Wischke Christian, Hofmann Dieter

机构信息

Institute of Active Polymers, Helmholtz-Zentrum Hereon, Kantstrasse 55, 14513 Teltow, Germany.

出版信息

Polymers (Basel). 2022 Sep 8;14(18):3762. doi: 10.3390/polym14183762.

Abstract

Ellipsoidal polymer particles can be prepared from spheres by unidirectional stretching at elevated temperatures, while the particles' aspect ratios () that result from this phantom stretching methodology are often not precisely predictable. Here, an elastic deformation model was exemplarily evaluated for ~50 µm spherical microparticles from PPDL-PTHF block copolymers. The prolate ellipsoidal particles, obtained by stretching in polyvinyl alcohol phantoms, differed in dimensions at identical relative phantoms elongations up to 150%, depending on the relative polymer composition and their systematically altered mechanical properties. Importantly, the resulting particle shapes within the studied range of up to ~4 matched the predictions of the elastic deformation model, which includes information of the elastic moduli of phantom and particle materials. These data suggest that the model may be applicable to predict the conditions needed to precisely prepare ellipsoids of desired and may be applicable to various deformable particle materials.

摘要

椭球状聚合物颗粒可以通过在高温下进行单向拉伸由球体制备而成,然而,这种虚拟拉伸方法所产生的颗粒长径比()往往无法精确预测。在此,针对由PPDL-PTHF嵌段共聚物制成的约50 µm球形微粒,对一种弹性变形模型进行了示例性评估。通过在聚乙烯醇虚拟体中拉伸获得的长椭球状颗粒,在高达150%的相同相对虚拟体伸长率下,尺寸有所不同,这取决于相对聚合物组成及其系统改变的机械性能。重要的是,在高达约4的研究范围内所得到的颗粒形状与弹性变形模型的预测相符,该模型包含了虚拟体和颗粒材料的弹性模量信息。这些数据表明,该模型可能适用于预测精确制备具有所需长径比的椭球体所需的条件,并且可能适用于各种可变形颗粒材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2aa/9502769/3ff310f20d1f/polymers-14-03762-g001.jpg

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