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利用碱基之间的互补氢键调节接枝纤维素梳型共聚物纳米粒子的形态和表面性质。

Modulating Morphologies and Surface Properties of Nanoparticles from Cellulose-Grafted Bottlebrush Copolymers Using Complementary Hydrogen-Bonding between Nucleobases.

出版信息

Biomacromolecules. 2020 Feb 10;21(2):613-620. doi: 10.1021/acs.biomac.9b01345. Epub 2019 Dec 30.

Abstract

Herein we report the synthesis of a cellulose-grafted bottlebrush copolymer with nucleobases as hydrophobic moieties. Well-defined spherical micelles from this bottlebrush copolymer were fabricated via a solvent switch method. A morphological transition from spheres to worms was only observed to occur when a diblock copolymer with a complementary nucleobase functionality was introduced. Hydrophobic interaction is not capable of triggering the morphological transformation, and the diblock copolymer with the heterogeneous acrylamide nucleobase monomer can induce the morphological transition at higher A:T molar ratios, which might be caused by the weak H-bonding interaction. This supramolecular "grafting to" method enables the preparation of a series of nanoparticles with similar shapes and dimensions but distinct surface properties such as zeta potentials. Moreover, reversible morphological transitions between worm-like micelles and spheres can be achieved using a reversible collapsing and swelling of a thermoresponsive polymer. This work highlights that a supramolecular "grafting to" approach between complementary nucleobases can be utilized to tune morphologies and surface properties of nanoparticles.

摘要

在这里,我们报告了一种以核苷为疏水性部分接枝纤维素的梳状共聚物的合成。通过溶剂转换法制备了这种梳状共聚物的规则球形胶束。只有当引入具有互补碱基功能的嵌段共聚物时,才观察到从球体到蠕虫的形态转变。疏水相互作用不能引发形态转变,而具有杂化丙烯酰胺碱基单体的嵌段共聚物可以在更高的 A:T 摩尔比下诱导形态转变,这可能是由于弱氢键相互作用。这种超分子“接枝到”方法能够制备一系列具有相似形状和尺寸但表面性质(如 ζ 电位)不同的纳米粒子。此外,使用温敏聚合物的可逆收缩和溶胀可以实现蠕虫状胶束和球体之间的可逆形态转变。这项工作强调,互补碱基之间的超分子“接枝到”方法可用于调节纳米粒子的形态和表面性质。

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