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Liesegang Phenomena: Spontaneous Pattern Formation Engineered by Chemical Reactions

机译:Liesegang现象:化学反应设计的自发模式形成

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Numerous self-organized spatiotemporal patterns are seen in Nature, many of which are controlled via minute balances between the reactions and diffusion of the constituents in each system. The Liesegang phenomenon is one of the major mechanisms that yield static self-organized patterns in Nature, e.g., the beautiful patterns of agates. Since the discovery of the Liesegang phenomenon in chemistry, many researchers have attempted to identify the inherent mechanism to enable the engineering of desired patterns by chemical reactions. In this review, we briefly discuss the theoretical background of Liesegang phenomena, which can be used to quantitatively explain the experimental results in a number of Liesegang systems. Some recent developments in the controlled construction of Liesegang patterns are then reviewed.
机译:在自然界中看到了许多自组织的时空模式,其中许多是通过反应和各个系统中成分的扩散之间的微小平衡来控制的。里瑟冈现象是在自然界中产生静态自组织模式(例如玛瑙的美丽模式)的主要机制之一。自从在化学中发现Liesegang现象以来,许多研究人员已尝试确定内在机制,以通过化学反应实现所需模式的工程化。在这篇综述中,我们简要讨论了李斯刚现象的理论背景,可以用来定量解释许多李斯刚系统的实验结果。然后回顾了Liesegang模式的受控构造的一些最新进展。

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