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由AB二嵌段共聚物在长纳米圆柱体上形成的圆柱壳中条纹、螺旋和堆叠环面之间转变的潜在机制。

The mechanism underlying the transitions between stripes, helices, and stacked toroids in the cylindrical shell formed by AB diblock copolymers on a long nanocylinder.

作者信息

Bahetihan Hajinuer, Ma Liangjun, Kong Weixin

机构信息

School of Physics Science and Technology, Xinjiang University, Urumqi, Xinjiang 830046, China.

出版信息

Phys Chem Chem Phys. 2024 May 1;26(17):13480-13488. doi: 10.1039/d4cp00371c.

Abstract

The self-assembly of block copolymers on nanocylinders has attracted a lot of interest due to its potential application in biomedicine and other fields. In this study, the self-assembly phase behavior of AB diblock copolymers on long nanocylinders in soft confinement has been studied by using a simulated annealing method. A square phase diagram of the morphology was constructed by increasing the number of chains of copolymers (cn) and the cylindrical diameter (). As a result, morphological transitions from striped to helical and axially stacked toroids, as well as reversible transitions, started to appear. By analyzing the chain packing in a fan-shaped region and calculating the mean-square end-to-end distance (DEE2) of the copolymers and number of AB contacts, both types of transitions were found to be driven by the competition between conformational entropy and AB interfacial energy. The number of stripes increased and the helical angle decreased with the increase in cylinder diameter. The chirality of the helix was found to be random.

摘要

嵌段共聚物在纳米圆柱体上的自组装因其在生物医学和其他领域的潜在应用而备受关注。在本研究中,采用模拟退火方法研究了AB二嵌段共聚物在软受限长纳米圆柱体上的自组装相行为。通过增加共聚物链数(cn)和圆柱直径()构建了形态的方形相图。结果,出现了从条纹状到螺旋状和轴向堆叠环面的形态转变以及可逆转变。通过分析扇形区域中的链堆积并计算共聚物的均方端到端距离(DEE2)和AB接触数,发现这两种转变均由构象熵与AB界面能之间的竞争驱动。随着圆柱直径增加,条纹数增加且螺旋角减小。发现螺旋的手性是随机的。

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