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A simple solution to the problem of self-assembling cubic diamond crystals

机译:自组装立方金刚石晶体问题的简单解决方案

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摘要

The self-assembly of colloidal diamond (CD) crystals is considered as one of the most coveted goals of nanotechnology, both from the technological and fundamental points of view. For applications, colloidal diamond is a photonic crystal which can open new possibilities of manipulating light for information processing. From a fundamental point of view, its unique symmetry exacerbates a series of problems that are commonly faced during the self-assembly of target structures, such as the presence of kinetic traps and the formation of crystalline defects and alternative structures (polymorphs). Here we demonstrate that all these problems can be systematically addressed via SAT-assembly, a design framework that converts self-assembly into a Boolean satisfiability problem (SAT). Contrary to previous solutions (requiring four or more components), we prove that the assembly of the CD crystal only requires a binary mixture. Moreover, we use molecular dynamics simulations of a system composed by nearly a million nucleotides to test a DNA nanotechnology design that constitutes a promising candidate for experimental realization.
机译:的自组装胶体钻石(CD)晶体被认为是其中一个最令人垂涎的从纳米技术的目标技术和基本的观点。应用胶体钻石是一个光子水晶可以打开新的可能性的操纵光信息处理。从一个基本的观点,其独特的对称加剧了一系列问题通常面临的自组装过程中吗目标结构,如的存在动能陷阱和晶体的形成缺陷和替代结构(多晶型物)。我们证明这些问题通过SAT-assembly,系统地解决设计框架,将自组装转换成一个布尔可满足性问题(SAT)。之前的解决方案(要求四个或更多组件),我们证明了组装的CD水晶只需要二元混合物。我们使用分子动力学模拟系统由近一百万个核苷酸进行测试一个DNA纳米技术设计构成有前途的候选人为实验实现。

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