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首页> 外文期刊>RSC Advances >Multiple-responsive supramolecular vesicle based on azobenzene-cyclodextrin host-guest interaction
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Multiple-responsive supramolecular vesicle based on azobenzene-cyclodextrin host-guest interaction

机译:基于偶氮苯 - 环糊精宿主互动的多响应超分子囊泡

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Multiple-responsive supramolecular vesicles have been successfully fabricated by the complexation between beta-cyclodextrin (beta-CD) and a pH/photo dual-responsive amphiphile 4-(4-(hexyloxy)phenylazo)benzoate sodium (HPB) with azobenzene and carboxylate groups. When mixing beta-CD with HPB to reach a host/guest molar ratio of 1 : 1, the azobenzene group of HPB could be spontaneously included by beta-CD molecules. Then, the formed inclusion complexes (HPB@beta-CD) could self-assemble into vesicles, which was driven by the hydrophobic interaction of the alkyl chain of HPB and the hydrogen bonds between neighboring beta-CDs. The reversible assembly/disassembly of the vesicles could be simply regulated under UV or visible light irradiation. The reversible phase transformation between vesicles and microbelts could also be realized by adjusting the pH values of the sample. Adding both competitive guest molecules (1-adamantane carboxylic acid sodium (ADA)) and alpha-amylase would result in the phase transformation from vesicles to micelles. Moreover, the vesicles would be destroyed when beta-CD was continuously added until the ratio of host/guest reached 2 : 1. Such an interesting quintuple-responsive vesicle system reported here not only has potential applications in various fields such as controlled release or drug delivery, but also provides a reference for the design and construction of multiple responsive systems.
机译:通过β-环糊精(β-CD)与pH /照片双响应两体的4-(4-(己氧基)苯基苯基)苯甲酸钠(HPB)与偶氮苯和羧酸盐基团的络合成功制造了多响应的超分子囊泡。当用HPB混合β-CD以达到宿主/客销摩尔比为1:1时,HPB的偶氮苯基可以由β-CD分子自发地包括。然后,形成的包合物(HPB @ Beta-CD)可以自组装成囊泡,其由HPB的烷基链的疏水相互作用和相邻β-CD之间的氢键驱动。囊泡的可逆组装/拆卸可以简单地在UV或可见光照射下调节。还可以通过调节样品的pH值来实现囊泡和微磁之间的可逆相变。添加竞争性客体分子(1-亚烷烷酸羧酸钠(ADA))和α-淀粉酶将导致从囊泡的相变化到胶束。此外,当β-CD连续加入β-CD之前,囊泡将被破坏,直到达到2:1的主机/客人的比例。在这里报告的这种有趣的Quintuple-encightive囊泡系统不仅具有各种领域的潜在应用,例如控释或药物交付,还为多个响应系统的设计和构建提供了参考。

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  • 来源
    《RSC Advances 》 |2020年第32期| 共9页
  • 作者单位

    Taiyuan Normal Univ Dept Chem Jinzhong 030619 Peoples R China;

    Taiyuan Normal Univ Dept Chem Jinzhong 030619 Peoples R China;

    Taiyuan Normal Univ Dept Chem Jinzhong 030619 Peoples R China;

    Taiyuan Normal Univ Dept Chem Jinzhong 030619 Peoples R China;

    Taiyuan Normal Univ Dept Chem Jinzhong 030619 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
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