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通过刚性球棒两亲物将连续曲率转变为可控且响应性的洋葱状囊泡。

Continuous Curvature Change into Controllable and Responsive Onion-like Vesicles by Rigid Sphere-Rod Amphiphiles.

作者信息

Luo Jiancheng, Liu Tong, Qian Kun, Wei Benqian, Hu Yinghe, Gao Min, Sun Xinyu, Lin Zhiwei, Chen Jiahui, Bera Mrinal K, Chen Yuhang, Zhang Ruimeng, Mao Jialin, Wesdemiotis Chrys, Tsige Mesfin, Cheng Stephen Z D, Liu Tianbo

机构信息

Department of Polymer Science , The University of Akron , Akron , Ohio 44325 , United States.

South China Advanced Institute for Soft Matter Science and Technology , South China University of Technology , Guangzhou 510640 , China.

出版信息

ACS Nano. 2020 Feb 25;14(2):1811-1822. doi: 10.1021/acsnano.9b07611. Epub 2020 Feb 3.

Abstract

We observe the formation of highly controllable and responsive onion-like vesicles by using rigid sphere-rod amphiphilic hybrid macromolecules, composed of charged, hydrophilic Keggin-type clusters (spheres) and hydrophobic rod-like oligofluorenes (OFs). Unlike the commonly used approach, which mainly relies on chain bending of flexible molecules to satisfy different curvatures in onion-like vesicles, the rigid hybrids form flexible interdigitations by tuning the angles between OFs, leading to the formation of bilayers with different sizes. The self-assembled vesicles possess complete onion-like structures from most inner to outer layers, and their size (layer number) can be accurately manipulated by different solution conditions including solvent polarity, ionic strength, temperature, and hybrid concentration, with fixed interbilayer distance under all conditions. Moreover, the vesicle size (layer number) shows excellent reversibility to the change of temperature. The charged feature of spheres, rod length, and overall hybrid architecture shows significant effects on the formation of such onion-like vesicles.

摘要

我们通过使用由带电的亲水性凯gin型簇(球体)和疏水性棒状低聚芴(OFs)组成的刚性球棒两亲性杂化大分子,观察到了高度可控且响应性良好的洋葱状囊泡的形成。与常用方法不同,常用方法主要依靠柔性分子的链弯曲来满足洋葱状囊泡中不同的曲率,而刚性杂化物通过调节OFs之间的角度形成柔性交叉排列,从而导致形成不同尺寸的双层膜。自组装囊泡具有从最内层到最外层完整的洋葱状结构,并且在包括溶剂极性、离子强度、温度和杂化浓度在内的不同溶液条件下,其大小(层数)可以精确控制,在所有条件下双层膜间距固定。此外,囊泡大小(层数)对温度变化表现出优异的可逆性。球体的带电特性、棒的长度以及整体杂化结构对这种洋葱状囊泡的形成有显著影响。

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