Matsumoto Mayuko, Sawamoto Mitsuo, Terashima Takaya
Department of Polymer Chemistry, Graduate School of Engineering, Kyoto University, Katsura, Nishikyo-ku, Kyoto 615-8510, Japan.
Institute of Science and Technology Research, Chubu University, 1200 Matsumoto-cho, Kasugai, Aichi 487-8501, Japan.
ACS Macro Lett. 2019 Mar 19;8(3):320-325. doi: 10.1021/acsmacrolett.9b00078. Epub 2019 Mar 7.
Here, we report orthogonal folding and self-assembly systems of amphiphilic/fluorous random block copolymers for double core and multicompartment micelles in water. For this, we developed the precision folding techniques of polymer chains via the selective self-assembly of the pendant groups. Typically, A/C-B/C random block copolymers were designed: Hydrophobic dodecyl groups (A) and fluorous fluorinated octyl groups (B) were introduced into the respective blocks, while hydrophilic poly(ethylene glycol) chains (C) were randomly incorporated into all the segments. By controlling the chain length and composition of the respective blocks, the copolymers induce orthogonal single-chain folding in water to form double-compartment micelles comprising hydrophobic and fluorous cores. The copolymers were site-selectively folded in a fluoroalcohol to result in tadpole unimer micelles comprising a hydrophobic A/C unimer micelle and an unfolded fluorous B/C chain. Additionally, asymmetric A/C-B/C random block copolymers with short and highly hydrophobic or fluorous segments were effective for multicompartment micelles in water.
在此,我们报道了两亲性/氟代无规嵌段共聚物在水中形成双核和多隔室胶束的正交折叠和自组装体系。为此,我们通过侧基的选择性自组装开发了聚合物链的精确折叠技术。典型地,设计了A/C-B/C无规嵌段共聚物:将疏水的十二烷基基团(A)和氟代的含氟辛基基团(B)引入各自的嵌段中,而亲水的聚乙二醇链(C)随机地并入所有链段中。通过控制各个嵌段的链长和组成,这些共聚物在水中诱导正交单链折叠,形成包含疏水核和氟代核的双隔室胶束。这些共聚物在氟代醇中进行位点选择性折叠,得到由疏水的A/C单分子胶束和未折叠的含氟B/C链组成的蝌蚪状单分子胶束。此外,具有短且高度疏水或含氟链段的不对称A/C-B/C无规嵌段共聚物对水中的多隔室胶束有效。