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Supramolecular hydrogel hybrids having high mechanical property, photoluminescence and light-induced shape deformation capability: Design, preparation and characterization

机译:具有高机械性能,光致发光和光致形状变形能力的超分子水凝胶杂化物:设计,制备和表征

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Integration of property, function, and intelligence in one single material obviously can further exploit applications of hydrogels, which remains a challenge. Physical mixing or chemical grating of functional components into hydrogels cannot easily achieve this goal. Here, we designed a new approach to prepare supramolecular hydrogel hybrids that presented high mechanical property, good photoluminescent function, and evident light-induced shape-deformation intelligence. Hydrogen bonding was constructed between nitrates in rare earth organic complex of Sm(TTA) Phen( NO3)(3) (STPN) (TTA and Phen stand for alpha-thenoyltrifluoroacetone and 1,10-phenanthroline) and car-boxyl groups in smart hydrogel networks. A facile solution mixing step without any harsh conditions allowed the successful preparation of hydrogel hybrids, which was suggested by the results of FTIR, (HNMR)-H-1 and UV-vis spectro-photometer. The compressivestrength of hydrogel hybrids was increased greatly from 50 to 556 kPa after mixing STPN, while evident photoluminescence was demonstrated as well. More importantly, the presence of STPN enabled such supramolecular hydrogel hybrids to increase their temperatures and to contract shapes under the irradiation of near-infrared light at 1064 nm. This work provides a simple method to create supramolecular hydrogel hybrids that can be potentially used in the fields of soft actuators, drug delivery carriers, and so on. (C) 2018 Elsevier Ltd.
机译:将特性,功能和智能整合到一种材料中显然可以进一步利用水凝胶的应用,这仍然是一个挑战。将功能成分物理混合或化学磨碎到水凝胶中无法轻松实现这一目标。在这里,我们设计了一种新的方法来制备超分子水凝胶杂化体,该杂合体具有较高的机械性能,良好的光致发光功能以及明显的光诱导形状变形智能。在Sm(TTA)Phen(NO3)(3)(STPN)的稀土有机配合物中的硝酸盐(TTA和Phen代表α-thenoyltrifluoroacetone和1,10-phenthroline)与智能水凝胶中的羧基之间建立氢键网络。 FTIR,(HNMR)-H-1和UV-vis分光光度计的结果表明,简便的溶液混合步骤无需任何苛刻条件即可成功制备水凝胶杂化物。混合STPN后,水凝胶杂化物的抗压强度从50 kPa大大增加到556 kPa,同时还显示出明显的光致发光。更重要的是,STPN的存在使这种超分子水凝胶杂化物能够在1064 nm的近红外光照射下提高温度并收缩形状。这项工作提供了一种简单的方法来创建超分子水凝胶杂化体,该杂化体可潜在地用于软促动器,药物输送载体等领域。 (C)2018爱思唯尔有限公司

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