Modular addition strategy-regulated polymerization-induced self-assembly: an in silico experiment.

IF 2.9 3区 化学 Q3 CHEMISTRY, PHYSICAL
Soft Matter Pub Date : 2025-01-20 DOI:10.1039/d4sm01403k
Bin Liu, Hui Lu, Yuqi Guo, Hong Liu, Tianhang Zhou, Yao-Hong Xue
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引用次数: 0

Abstract

We propose a modular addition strategy-regulated polymerization-induced self-assembly (PISA) system to effectively control the reaction kinetics and self-assembly morphologies. We validated this strategy by performing in silico experiments on a well-established PISA system. Two categories of modular addition strategies, i.e., the multistep addition strategy and the constant rate addition strategy, were investigated. Results showed that the modular addition operation of macromolecular chain transfer agents (macro-CTAs) effectively regulated the width of the molecular weight distribution for the hydrophobic PSt block, which further led to an assembly of vesicle structures with irregular aspherical cavities. Besides, we found a new transition pathway for the formation of vesicles, which involved generation of small vesicles in the early stage followed by a gradual growth in the intermediate and late stages. In the constant rate addition strategy, with the increase in the addition rate of macro-CTA, we found that the morphology basically tended to change from a micellar structure to a vesicle structure. This study holds potential to inspire future work toward the improvement of experimental techniques in PISA-relevant systems.

模块化加成策略调控聚合诱导自组装:一个硅实验。
我们提出了一个模块化加成策略调控聚合诱导自组装(PISA)系统,以有效控制反应动力学和自组装形态。我们通过在一个完善的PISA系统上进行计算机实验来验证这一策略。研究了两类模块化加法策略,即多步加法策略和恒速率加法策略。结果表明,大分子链转移剂(macro- cta)的模块化加成操作可有效调节疏水PSt块的分子量分布宽度,从而导致具有不规则非球形空腔的囊泡结构的组装。此外,我们还发现了一种新的囊泡形成过渡途径,即早期产生小囊泡,中后期逐渐生长。在恒速加成策略下,随着宏观cta加成速率的增加,形貌基本趋向于由胶束结构向囊泡结构转变。这项研究具有启发未来工作朝着改进pisa相关系统的实验技术的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Soft Matter
Soft Matter 工程技术-材料科学:综合
CiteScore
6.00
自引率
5.90%
发文量
891
审稿时长
1.9 months
期刊介绍: Soft Matter is an international journal published by the Royal Society of Chemistry using Engineering-Materials Science: A Synthesis as its research focus. It publishes original research articles, review articles, and synthesis articles related to this field, reporting the latest discoveries in the relevant theoretical, practical, and applied disciplines in a timely manner, and aims to promote the rapid exchange of scientific information in this subject area. The journal is an open access journal. The journal is an open access journal and has not been placed on the alert list in the last three years.
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