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首页> 外文期刊>Journal of Colloid and Interface Science >Colloidal chirality in wormlike micellar systems exclusively originated from achiral species: Role of secondary assembly and stimulus responsivity
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Colloidal chirality in wormlike micellar systems exclusively originated from achiral species: Role of secondary assembly and stimulus responsivity

机译:仅源自非手性物种的蠕虫状胶束系统中的胶体手性:次级组装和刺激响应性的作用

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摘要

Colloidal chirality in wormlike micellar systems exclusively originated from achiral species and discussion of the role of secondary assembly of fiber-like aggregates in chirality generation were presented in this paper. Herein, formation of colloidal wormlike micelles for the first time incorporated chirality and redox-responsiveness into one design via noncovalent interaction. A dual-stimuli-responsive gel of wormlike micelles which were designed by employing a dual-responsive cationic surfactant (FTMA) and a strong gelator (AzoNa(4)) and regulated by redox reaction and host-guest inclusion is presented. Both the redox and host-guest interaction play an important role in regulating the viscosity and supramolecular chirality of gels of the wormlike micelles. The supramolecular chirality and viscosity of the wormlike micelle gels were switched reversibly by exerting chemical redox onto the ferrocenyl groups. For the amphiphile FTMA containing redox-active ferrocenyl group, reversible control of the oxidation state of ferrocenyl groups leads to the charge and hydrophobicity changes of FTMA, therefore change its self-assembly behavior. Of equal interest, beta-CD successfully detached the wormlike micelles via the recognition-inclusion behavior with FTMA and invalidate the H-bond and hydrophobic interaction between FTMA and AzoH(4). This designed system provides a new strategy to tune the supramolecular chirality of colloidal aggregates and explore the specific packing mode detail within the micelles or the secondary assembly of the inter-micelles. We anticipate this dual-responsive H-bond-directed chiral gel switch could propose a new strategy when researchers designing new, multi-responsive functional gel materials. (C) 2016 Elsevier Inc. All rights reserved.
机译:蠕虫状胶束系统中的胶体手性仅源于非手性物种,本文讨论了纤维状聚集体的二次组装在手性产生中的作用。在此,胶体蠕虫状胶束的形成首次通过非共价相互作用将手性和氧化还原响应性纳入一个设计中。提出了一种蠕虫状胶束的双重刺激响应凝胶,该凝胶是通过使用双重响应阳离子表面活性剂(FTMA)和强力胶凝剂(AzoNa(4))设计的,并受氧化还原反应和宿主客体包涵体的调节。氧化还原和客体-客体相互作用在调节蠕虫状胶束的凝胶的粘度和超分子手性中均起重要作用。蠕虫状胶束凝胶的超分子手性和粘度通过在二茂铁基上施加化学氧化还原而可逆地切换。对于含有氧化还原活性二茂铁基的两亲性FTMA,对二茂铁基的氧化态的可逆控制导致FTMA的电荷和疏水性变化,因此改变了其自组装行为。同样有趣的是,β-CD通过与FTMA的识别-包容行为成功地分离了蠕虫状胶束,并使FTMA与AzoH之间的H键和疏水相互作用无效(4)。该设计的系统提供了一种新的策略,可调节胶体聚集体的超分子手性,并探索胶束或胶束间的二级组装中的特定堆积模式细节。我们预计,当研究人员设计新的,多反应功能性凝胶材料时,这种双反应性H键定向手性凝胶开关可能会提出新的策略。 (C)2016 Elsevier Inc.保留所有权利。

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