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A general route to nanocrystal kebabs periodically assembled on stretched flexible polymer shish

机译:定期在拉伸的柔性聚合物烤盘上组装纳米晶烤肉串的一般方法

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Assembling nanoparticles into one-dimensional (1D) nanostructures with precisely controlled size and shape renders the exploration of new properties and construction of 1D miniaturized devices possible. The physical properties of such nanostructures depend heavily on the size, chemical composition, and surface chemistry of nanoparticle constituents, as well as the close proximity of adjacent nanoparticles within the 1D nanostructure. Chemical synthesis provides an intriguing alternative means of creating 1D nanostructures composed of self-assembled nanoparticles in terms of material diversity, size controllability, shape regularity, and low-cost production. However, this is an area where progress has been slower. We report an unconventional yet general strategy to craft an exciting variety of 1D nanonecklace-like nanostructures comprising uniform functional nanodiscs periodically assembled along a stretched flexible polymer chain by capitalizing on judiciously designed amphiphilic worm-like diblock copolymers as nanoreactors. These nanostructures can be regarded as organic-inorganic shish-kebabs, in which nanodisc kebabs are periodically situated on a stretched polymer shish. Simulations based on self-consistent field theory reveal that the formation of organic-inorganic shish-kebabs is guided by the self-assembled elongated star-like diblock copolymer constituents constrained on the highly stretched polymer chain.
机译:将纳米颗粒组装成具有精确控制的尺寸和形状的一维(1D)纳米结构,使得探索新特性和构建一维小型化设备成为可能。此类纳米结构的物理特性在很大程度上取决于纳米颗粒成分的大小,化学组成和表面化学,以及一维纳米结构内相邻纳米颗粒的紧密距离。从材料多样性,尺寸可控制性,形状规则性和低成本生产方面,化学合成为创建由自组装纳米颗粒组成的一维纳米结构提供了一种有趣的替代方法。但是,这是进展缓慢的领域。我们报告了一种非常规但通用的策略,可利用经过精心设计的两亲蠕虫状二嵌段共聚物作为纳米反应器,设计出令人兴奋的各种1D纳米项链状纳米结构,包括均匀功能的纳米圆盘,这些均匀周期性的纳米圆盘沿着拉伸的柔性聚合物链定期组装。这些纳米结构可以被视为有机-无机烤肉串,其中纳米圆盘烤肉串周期性地位于拉伸的聚合物烤肉串上。基于自洽场论的模拟表明,有机-无机烤肉串的形成是受约束在高度拉伸的聚合物链上的自组装伸长的星形二嵌段共聚物组成的。

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