两亲性
自组装
分子
化学
化学物理
两亲分子
生物物理学
纳米技术
材料科学
生物
有机化学
共聚物
聚合物
作者
Xiaoyun Yan,Zhiwei Lin,Wei Zhang,Hui Xu,Qing‐Yun Guo,Yuchu Liu,Jiancheng Luo,Xian‐You Liu,Rongchun Zhang,Jiahao Huang,Tong Liu,Zebin Su,Ruimeng Zhang,Shuailin Zhang,Tianbo Liu,Stephen Z. D. Cheng
标识
DOI:10.1002/anie.201916149
摘要
How biomembranes are self-organized to perform their functions remains a pivotal issue in biological and chemical science. Understanding the self-assembly principles of lipid-like molecules hence becomes crucial. Herein, we report the mesostructural evolution of amphiphilic sphere-rod conjugates (giant lipids), and study the roles of geometric parameters (head-tail ratio and cross-sectional area) during this course. As a prototype system, giant lipids resemble natural lipidic molecules by capturing their essential features. The self-assembly behavior of two categories of giant lipids (I-shape and T-shape, a total of 8 molecules) is demonstrated. A rich variety of mesostructures is constructed in solution state and their molecular packing models are rationally understood. Giant lipids recast the phase behavior of natural lipids to a certain degree and the abundant self-assembled morphologies reveal distinct physiochemical behaviors when geometric parameters deviate from natural analogues.
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