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首页> 外文期刊>Nanoscale >Controlling disorder in self-assembled colloidal monolayers via evaporative processes
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Controlling disorder in self-assembled colloidal monolayers via evaporative processes

机译:在自组装胶体控制障碍层通过蒸发过程

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摘要

Monolayers of assembled nano-objects with a controlled degree of disorder hold interest in many optical applications, including photovoltaics, light emission, sensing, and structural coloration. Controlled disorder can be achieved through either top-down or bottom-up approaches, but the latter is more suited to large-scale, low-cost fabrication. Disordered colloidal monolayers can be assembled through evaporatively driven convective assembly, a bottom-up process with a wide range of parameters impacting particle placement. Motivated by the photonic applications of such monolayers, in this review we discuss the quantification of monolayer disorder, and the assembly methods that have been used to produce them. We review the impact of particle and solvent properties, as well as the use of substrate patterning, to create the desired spatial distributions of particles.
机译:层的nano-objects与组装控制的紊乱程度的兴趣许多光学应用程序,包括光电、光发射、传感和结构性色彩。通过自顶向下或自底向上的实现方法,但后者更适合大规模、低成本的制造。胶体层可以通过组装蒸发对流驱动总成,自下而上的过程和各种参数影响粒子的位置。光子应用这样的单层膜,回顾我们讨论单层的量化障碍,和装配方法用于生产。粒子和溶剂性质,以及使用基质模式,创建所需的空间分布的粒子。

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