Key Lab of Organic Optoelectronics & Molecular Engineering, Department of Chemistry, Tsinghua University, Beijing 100084, PR China.
Langmuir. 2010 Sep 21;26(18):14414-8. doi: 10.1021/la102837a.
We have fabricated a polymeric superamphiphile based on the electrostatic interaction between the double hydrophilic block copolymer of poly(ethylene glycol)-b-acrylic acid (PEG-b-PAA) and a selenium-containing surfactant (SeQTA). The polymeric superamphiphiles are able to self-assemble to form micelles in solution. The micelles can be disassembled with the addition of 0.1% H(2)O(2) because SeQTA is very sensitive to oxidation. The selenide group in SeQTA is oxidized into selenoxide (SeQTA-Ox) by H(2)O(2), which makes the surfactant more hydrophilic, thus leading to the disassembly of the micelles. In addition, small guest molecules such as fluorescein sodium can be loaded into the micelles made from the polymeric superamphiphiles and released in a controlled way under mild oxidation conditions. This study represents a new way to fabricate stimuli-responsive superamphiphiles for controlled self-assembly and disassembly.
我们通过静电相互作用,制备了一种基于聚乙二醇-接枝-丙烯酸共聚物(PEG-b-PAA)和含硒表面活性剂(SeQTA)的聚合物超两亲分子。聚合物超两亲分子能够在溶液中自组装形成胶束。加入 0.1% H(2)O(2)可以使胶束解体,因为 SeQTA 对氧化非常敏感。H(2)O(2)将 SeQTA 中的硒化物基团氧化成硒氧化物(SeQTA-Ox),使表面活性剂更亲水,从而导致胶束解体。此外,像荧光素钠这样的小分子客体可以被负载到由聚合物超两亲分子形成的胶束中,并在温和的氧化条件下以受控的方式释放。这项研究代表了一种新的方法来制备对刺激响应的超两亲分子,用于控制自组装和解体。