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Formation of homochiral helical nanostructures in diblock copolymers under the confinement of nanopores

机译:在纳米孔限制下二嵌段共聚物中的同性记螺旋纳米结构的形成

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摘要

The control of the homochirality of helical structures formed in achiral systems is of great interest as it is helpful for understanding the origin of homochirality in life. In this work, we introduce a spiral arrangement of patches into the inner surface of a nanopore to guide the self-assembly of a cylinder-forming AB diblock copolymer melt into a homochiral single helix. We calculate the free energy of the single-helical structures with different handedness using self-consistent field theory (SCFT). Moreover, we simulate the self-assembly process using an iterative process of SCFT solution starting from a disordered state, and count the formation probability of different helical structures. We find that the formation probability of the homochiral helix with favorable free energy increases rapidly, leading to the conclusion that a minuscule difference of 0.5-1.0 x 10(-4)k(B)T per chain is enough to obtain the homochiral helix by suppressing its counterpart of a higher free energy. However, for a stronger chiral guiding field, other homochiral helical structures with unfavorable handedness and thus increasingly higher free energy become more likely to be formed. Morphological snapshots during the self-assembly process reveal that the formation of these metastable helical structures is induced by their kinetic pathways, which are altered to be favorable by the strong chiral field of the patch pattern. Therefore, our work suggests that both thermodynamics and kinetics are important for controlling the chirality of helical structures.
机译:在成立体系中形成的螺旋结构的销售的控制具有很大的兴趣,因为它有助于理解生活中的销售的起源。在这项工作中,我们将贴片的螺旋布置引入纳米孔的内表面中,以引导圆柱体形成AB二嵌段共聚物的自组装成同型单纯螺旋。我们使用自洽场理论(SCFT)计算单螺旋结构的自由能。此外,我们使用从无序状态开始的SCFT解决方案的迭代过程来模拟自组装过程,并计算不同螺旋结构的形成概率。我们发现,具有良好自由能量的冠编螺旋的形成概率迅速增加,导致每链0.5-1.0×10(-4)k(b)T的小分布差足以获得HONOCHIRAL螺旋抑制其更高的自由能的对应物。然而,对于更强的手性引导田,其他具有不利手性的独立螺旋螺旋结构,因此更容易形成更容易形成更高的自由能。自组装过程中的形态快照揭示了这些亚稳螺旋结构的形成由其动力学途径引起,这被改变为贴片图案的强手性领域有利。因此,我们的工作表明,热力学和动力学都很重要,对控制螺旋结构的手感。

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    Ningxia Univ Sch Phys &

    Elect Elect Engn Ningxia Key Lab Informat Sensing &

    Intelligent De Yinchuan 750021 Peoples R China;

    Ningxia Univ Sch Phys &

    Elect Elect Engn Ningxia Key Lab Informat Sensing &

    Intelligent De Yinchuan 750021 Peoples R China;

    Ningxia Univ Xinhua Coll Yinchuan 750021 Peoples R China;

    Fudan Univ Dept Macromol Sci State Key Lab Mol Engn Polymers Shanghai 200433 Peoples R China;

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  • 正文语种 eng
  • 中图分类 物理学;化学;
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