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Thermo-Switchable Pressure-Sensitive Adhesives Based on Poly(N?vinyl caprolactam) Non-Covalently Cross-Linked by Poly(ethylene glycol)

机译:基于聚(N?乙烯基己内酰胺)与聚乙二醇非共价交联的热敏压敏胶

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The properties of new hydrophilic pressure-sensitive adhesives (PSA) obtained by blending poly(N-vinyl caprolactam) (PVCL) with short-molecular weight poly(ethylene glycol) (PEG) were studied in aqueous media by a combination of several calorimetric and adhesion testing techniques. We found that the adhesive properties of the blends are the result of an extensive hydrogen bonding network formed between PVCL and PEG similar to the poly(N-vinylpyrrolidone) (PVP)/PEG blends, except the extent of cross-linking is nearly 3 times higher in PVCL?PEG networks. Accordingly, we observed substantially higher peel adhesion in PVCL?PEG blends, which depends strongly on the amount of adsorbed water and the temperature. The adhesive properties of PVCL?PEG gels are considerably diminished when the amount of absorbed water exceeds 30% or at elevated temperature but can be easily recovered by drying or cooling the sample. The observed responsiveness of PVCL?PEG hydrogels in physiologically relevant temperature range makes them interesting candidates for industrial and biomedical applications as smart PSAs.
机译:在水介质中,通过将几种量热法和附着力测试技术。我们发现,共混物的粘合性能是PVCL和PEG之间形成的广泛氢键网络的结果,类似于聚(N-乙烯基吡咯烷酮)(PVP)/ PEG共混物,但交联程度约为3倍在PVCL?PEG网络中更高。因此,我们在PVCL-PEG共混物中观察到明显更高的剥离粘合力,这在很大程度上取决于吸附水的量和温度。当吸收的水量超过30%或在高温下,PVCL?PEG凝胶的粘合性能会大大降低,但可以通过干燥或冷却样品轻松恢复。在生理相关温度范围内观察到的PVCL?PEG水凝胶的响应性,使其成为工业和生物医学应用中的智能PSA的有趣候选者。

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