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熵有利于开放的胶体晶格。

Entropy favours open colloidal lattices.

机构信息

Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, Philadelphia 19104, USA.

出版信息

Nat Mater. 2013 Mar;12(3):217-22. doi: 10.1038/nmat3496. Epub 2013 Jan 13.

Abstract

Burgeoning experimental and simulation activity seeks to understand the existence of self-assembled colloidal structures that are not close-packed. Here we describe an analytical theory based on lattice dynamics and supported by experiments that reveals the fundamental role entropy can play in stabilizing open lattices. The entropy we consider is associated with the rotational and vibrational modes unique to colloids interacting through extended attractive patches. The theory makes predictions of the implied temperature, pressure and patch-size dependence of the phase diagram of open and close-packed structures. More generally, it provides guidance for the conditions at which targeted patchy colloidal assemblies in two and three dimensions are stable, thus overcoming the difficulty in exploring by experiment or simulation the full range of conceivable parameters.

摘要

蓬勃发展的实验和模拟活动旨在理解非密堆积的自组装胶体结构的存在。在这里,我们描述了一个基于晶格动力学的分析理论,并通过实验得到支持,该理论揭示了熵在稳定开放晶格中可能发挥的基本作用。我们所考虑的熵与通过扩展吸引力斑块相互作用的胶体的旋转和振动模式有关。该理论对开放和密堆积结构相图的隐含温度、压力和斑块大小依赖性做出了预测。更一般地说,它为在二维和三维中实现有针对性的、有斑块的胶体组装的条件提供了指导,从而克服了通过实验或模拟探索所有可想象参数的困难。

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