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Kinetics-controlled design principles for two-dimensional open lattices using atom-mimicking patchy particles

机译:Kinetics-controlled设计原则二维晶格开放使用atom-mimicking片状颗粒

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The design and discovery of new two-dimensional materials with desired structures and properties are always one of the most fundamental goals in materials science. Here we present an atom-mimicking design concept to achieve direct self-assembly of two-dimensional low-coordinated open lattices using three-dimensional patchy particle systems. Besides honeycomb lattices, a new type of two-dimensional square-octagon lattice is obtained through rational design of the patch configuration of soft three-patch particles. However, unexpectedly the building blocks with thermodynamically favoured patch configuration cannot form square-octagon lattices in our simulations. We further reveal the kinetic mechanisms controlling the formation of the honeycomb and square-octagon lattices. The results indicate that the kinetically favoured intermediates play a critical role in determining the structure of obtained open lattices. This kinetics-controlled design principle provides a particularly effective and extendable framework to construct other novel open lattice structures.
机译:设计和新发现的二维的材料的结构和性质总是最基本的目标之一材料科学。实现直接atom-mimicking设计理念自组装的二维low-coordinated使用三维开放晶格参差不齐粒子系统。新型二维square-octagon格是通过理性的设计的补丁配置软三片粒子。块与热动力支持补丁配置不能形成square-octagon晶格在我们的模拟。控制的形成机制蜂窝和square-octagon晶格。结果表明,活动支持在确定中间体起着至关重要的作用获得开放晶格的结构。kinetics-controlled设计原则提供了一个特别有效的和可扩展的框架构建其他小说开放晶格结构。

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