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pH 诱导单链大环两亲分子与基于[2]雏菊链的bola型两亲分子之间的转变及其在水中的相关自组装行为

pH-Induced Transition Between Single-Chain Macrocyclic Amphiphile and [2]Daisy Chain-Based Bola-Type Amphiphile and the Related Self-Assembly Behavior in Water.

作者信息

Wang Pi, Wang Ruihuan, Xia Danyu

机构信息

Ministry of Education Key Laboratory of Interface Science and Engineering in Advanced Materials, Taiyuan University of Technology, Taiyuan, China.

Scientific Instrument Center, Shanxi University, Taiyuan, China.

出版信息

Front Chem. 2020 Jan 24;7:894. doi: 10.3389/fchem.2019.00894. eCollection 2019.

Abstract

Macrocyclic amphiphiles, a type of amphiphiles synthesized based on macrocyclic compounds, have attracted much attention over the past decades due to their unique superiority in the construction of various functional nanomaterials. The regulation of the state of macrocyclic amphiphiles by introducing stimuli-responsive motif to macrocyclic amphiphiles is an efficient way to extend their applications in diverse fields. Herein, pillararene-based macrocyclic amphiphile was prepared. can act as single-chain amphiphile to self-assemble into micelles in water when the pH was ≥5.0. can be protonated to turn into when pH changed to <5.0. Interestingly, formed [2]daisy chain-based bola-type supramolecular amphiphile. This bola-type supramolecular amphiphile self-assembled into nanosheets in water. Therefore, pH-induced transition between single-chain macrocyclic amphiphile and bola-type amphiphile and the corresponding self-assembly system based on pillararene in water were constructed.

摘要

大环两亲分子是一类基于大环化合物合成的两亲分子,在过去几十年中,由于其在构建各种功能纳米材料方面的独特优势而备受关注。通过将刺激响应基序引入大环两亲分子来调控其状态,是拓展其在不同领域应用的有效途径。在此,制备了基于柱芳烃的大环两亲分子。当pH≥5.0时,该分子可作为单链两亲分子在水中自组装形成胶束。当pH变为<5.0时,该分子可质子化转变为[具体形式未给出]。有趣的是,[具体形式未给出]形成了基于[2]雏菊链的bola型超分子两亲分子。这种bola型超分子两亲分子在水中自组装成纳米片。因此,构建了基于柱芳烃的单链大环两亲分子与bola型两亲分子之间的pH诱导转变以及相应的自组装体系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8540/6992661/759743af9d61/fchem-07-00894-g0006.jpg

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