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Gettinginto Shape: Reflections on a New Generationof Cylindrical Nanostructures’ Self-Assembly Using PolymerBuilding Blocks

机译:得到成形:对新一代的思考聚合物制备圆柱纳米结构的自组装建筑模块

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摘要

Cylinders are fascinating structures with uniquely high surface area, internal volume, and rigidity. On the nanoscale, a broad range of applications have demonstrated advantageous behavior of cylindrical micelles or bottlebrush polymers over traditional spherical nano-objects. In the past, obtaining pure samples of cylindrical nanostructures using polymer building blocks via conventional self-assembly strategies was challenging. However, in recent years, the development of advanced methods including polymerization-induced self-assembly, crystallization-driven self-assembly, and bottlebrush polymer synthesis has facilitated the easy synthesis of cylindrical nano-objects at industrially relevant scales. In this Perspective, we discuss these techniques in detail, highlighting the advantages and disadvantages of each strategy and considering how the cylindrical nanostructures that are obtained differ in their chemical structure, physical properties, colloidal stability, and reactivity. In addition, we propose future challenges to address in this rapidly expanding field.
机译:气缸是具有独特的高表面积,内部体积和刚度的迷人结构。在纳米级,广泛的应用证明了圆柱形胶束或洗瓶刷聚合物优于传统球形纳米物体的行为。过去,使用聚合物构件通过常规的自组装策略获得圆柱形纳米结构的纯样品具有挑战性。然而,近年来,包括聚合诱导的自组装,结晶驱动的自组装和刷式聚合物的合成在内的先进方法的发展促进了在工业上相关规模的圆柱形纳米物体的容易合成。在此“观点”中,我们将详细讨论这些技术,重点介绍每种策略的优缺点,并考虑获得的圆柱形纳米结构在化学结构,物理性质,胶体稳定性和反应性方面如何不同。此外,我们提出了在这个快速发展的领域中应对的未来挑战。

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