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带有“纳米葡萄干”的树脂。

Resins with "nano-raisins".

机构信息

Department of Mechanical and Industrial Engineering, University of Illinois at Chicago, 842 W. Taylor Street, Chicago, Illinois 60607-7022, USA.

出版信息

Langmuir. 2010 Jun 15;26(12):10243-9. doi: 10.1021/la1004177.

Abstract

Thermosensitive hydrogels are materials which globally shrink/swell in water when the surrounding temperature crosses the lower critical solution temperature (LCST). We demonstrate here a novel class of cross-linked polymeric materials, which do not shrink/swell in water globally, but nevertheless reveal a hydrogel-like, stimuli-responsive behavior. In particular, they demonstate a positive thermosensitive release of the embedded fluorescent dye significantly modulated when temperature crosses the LCST. Using staining with copper, transmission electron microscopy and energy dispersive X-ray analysis, we show that this effect is associated with nanogel "raisins" dispersed in such materials (e.g., polymer nanofibers). Shrinkage of individual nanogel "raisins" at elevated temperatures increases nanoporosity via increased exposure of the existing nanopores to water, or formation of new nanopores/nanocracks in the overstretched polymer matrix in the vicinity of shrinking nanogel "raisins". As a result, the release rate of the embedded dye from the nanofibers increases at elevated temperatures. We suggest that similar functional materials with embedded nanogel "raisins" will find applications in nanofluidics and as drug carriers for controlled drug release.

摘要

温敏水凝胶是指当环境温度超过低临界溶液温度(LCST)时,整体在水中收缩/溶胀的材料。我们在这里展示了一类新型的交联聚合物材料,它们在水中不会整体收缩/溶胀,但却表现出类似水凝胶的、对刺激有响应的行为。具体来说,它们展示了嵌入的荧光染料的正温度敏感释放,当温度超过 LCST 时,这种释放会显著调节。通过铜染色、透射电子显微镜和能量色散 X 射线分析,我们表明这种效应与纳米凝胶“葡萄干”在这些材料中的分散有关(例如聚合物纳米纤维)。在高温下,单个纳米凝胶“葡萄干”的收缩会通过增加现有纳米孔对水的暴露,或在收缩纳米凝胶“葡萄干”附近的拉伸聚合物基质中形成新的纳米孔/纳米裂纹,从而增加纳米孔隙率。结果,嵌入染料从纳米纤维中的释放速率在高温下增加。我们认为,具有嵌入纳米凝胶“葡萄干”的类似功能材料将在纳米流控学和作为控制药物释放的药物载体方面得到应用。

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