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对带有接枝聚乙二醇链的聚(ε-己内酯)网络进行原位X射线散射研究,以探究双形状和三形状效应过程中的结构变化。

In Situ X-Ray Scattering Studies of Poly(ε-caprolactone) Networks with Grafted Poly(ethylene glycol) Chains to Investigate Structural Changes during Dual- and Triple-Shape Effect.

作者信息

Wagermaier Wolfgang, Zander Thomas, Hofmann Dieter, Kratz Karl, Narendra Kumar U, Lendlein Andreas

机构信息

Center for Biomaterial Development, GKSS Research Center Geesthacht GmbH, 14513 Teltow, Germany.

出版信息

Macromol Rapid Commun. 2010 Sep 1;31(17):1546-53. doi: 10.1002/marc.201000122. Epub 2010 Jul 5.

DOI:10.1002/marc.201000122
PMID:21567565
Abstract

The dual- and triple-shape effects of multiphase polymer networks that contain two crystallizable chain segments have been assessed in situ by combining X-ray measurements with thermomechanical investigations. The studied polymer, named CLEG, is a multiphase polymer network of crystallizable poly(ε-caprolactone) (PCL) with grafted poly(ethylene glycol) (PEG) side chains. Wide-angle (WAXS) and small-angle X-ray scattering (SAXS) measurements were combined with temperature-controlled in situ tensile testing experiments. This integrated approach enables systematic investigation and interpretation of relevant structural features during the programming procedures and the thermally-induced recovery process. Main results concern the combined effect of PCL and PEG crystals on shape fixation, the specific role of low-melting PCL crystallites in the fixation of the low temperature temporary shape, and the different orientation behavior of PCL and PEG crystals during certain stages of the programming procedure. These results demonstrate that crystal orientation effects are dominant for the PCL crystals. The effects of the low temperature PCL crystals could only be investigated when synchrotron radiation was applied. These findings indicate the great potential of in situ X-ray investigations for the creation of design-relevant knowledge about the microscopic foundations of dual- and triple-shape effects in appropriate polymer systems.

摘要

通过将X射线测量与热机械研究相结合,对含有两个可结晶链段的多相聚合物网络的双形状和三形状效应进行了原位评估。所研究的聚合物名为CLEG,是一种可结晶的聚(ε-己内酯)(PCL)与接枝聚(乙二醇)(PEG)侧链的多相聚合物网络。广角(WAXS)和小角X射线散射(SAXS)测量与温度控制的原位拉伸试验相结合。这种综合方法能够在编程过程和热诱导恢复过程中对相关结构特征进行系统研究和解释。主要结果涉及PCL和PEG晶体对形状固定的综合影响、低熔点PCL微晶在低温临时形状固定中的特定作用,以及PCL和PEG晶体在编程过程某些阶段的不同取向行为。这些结果表明,晶体取向效应在PCL晶体中占主导地位。只有应用同步辐射时才能研究低温PCL晶体的效应。这些发现表明,原位X射线研究在创建关于合适聚合物系统中双形状和三形状效应微观基础的与设计相关知识方面具有巨大潜力。

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