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Synthesis and Self-Assembled Behavior of pH-Responsive Chiral Liquid Crystal Amphiphilic Copolymers Based on Diosgenyl-Functionalized Aliphatic Polycarbonate

机译:基于薯os酰基官能化脂肪族聚碳酸酯的pH响应型手性液晶两亲共聚物的合成及自组装行为

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The morphological control of polymer micellar aggregates is an important issue in applications such as nanomedicine and material science. Stimuli responsive soft materials have attracted significant attention for their well-controlled morphologies. However, despite extensive studies, it is still a challenge to prepare nanoscale assemblies with responsive behaviors. Herein, a new chiral liquid crystal (LC) aliphatic polycarbonate with side chain bearing diosgenyl mesogen, named mPEG 43 -PMCC 25 -P(MCC-DHO) 15 , was synthesized through the ring-opening polymerization and coupling reaction. The self-assembled behavior of the LC copolymer was explored. In aqueous solution, the functionalized copolymer could self-organize into different nanostructures with changing pH value, such as nanospheres and nanofibers. This would offer new possibilities in the design of nanostructured organic materials.
机译:聚合物胶束聚集体的形态控制是诸如纳米医学和材料科学等应用中的重要问题。响应灵敏的柔软材料因其形状控制得当而引起了极大的关注。然而,尽管进行了广泛的研究,但制备具有响应行为的纳米级组件仍然是一个挑战。本文中,通过开环聚合反应和偶联反应,合成了一种新的带有侧链带有二异硫氰酸基液晶元的手性液晶脂族聚碳酸酯,称为mPEG 43 -PMCC 25 -P(MCC-DHO)15。探索了LC共聚物的自组装行为。在水溶液中,功能化的共聚物会随着pH值的变化而自组织成不同的纳米结构,例如纳米球和纳米纤维。这将为纳米结构有机材料的设计提供新的可能性。

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