偶氮苯
光异构化
部分
自愈水凝胶
环糊精
自组装
离解(化学)
分子识别
分子
化学
分子开关
材料科学
纳米技术
异构化
高分子化学
立体化学
催化作用
有机化学
作者
Hiroyasu Yamaguchi,Yuichiro Kobayashi,Ryosuke Kobayashi,Yoshinori Takashima,Akihito Hashidzume,Akira Harada
摘要
The formation of effective and precise linkages in bottom-up or top-down processes is important for the development of self-assembled materials. Self-assembly through molecular recognition events is a powerful tool for producing functionalized materials. Photoresponsive molecular recognition systems can permit the creation of photoregulated self-assembled macroscopic objects. Here we demonstrate that macroscopic gel assembly can be highly regulated through photoisomerization of an azobenzene moiety that interacts differently with two host molecules. A photoregulated gel assembly system is developed using polyacrylamide-based hydrogels functionalized with azobenzene (guest) or cyclodextrin (host) moieties. Reversible adhesion and dissociation of the host gel from the guest gel may be controlled by photoirradiation. The differential affinities of α-cyclodextrin or β-cyclodextrin for the trans-azobenzene and cis-azobenzene are employed in the construction of a photoswitchable gel assembly system.
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