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Spiral and target patterns in bivalve nacre manifest a natural excitable medium from layer growth of a biological liquid crystal

机译:双壳珍珠层中的螺旋和目标图案显示了生物液晶层生长的自然可激发介质

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摘要

Nacre is an exquisitely structured biocomposite of the calcium carbonate mineral aragonite with small amounts of proteins and the polysaccharide chitin. For many years, it has been the subject of research, not just because of its beauty, but also to discover how nature can produce such a superior product with excellent mechanical properties from such relatively weak raw materials. Four decades ago, Wada [Wada K (1966) Spiral growth of nacre. Nature 211:1427] proposed that the spiral patterns in nacre could be explained by using the theory Frank [Frank F (1949) The influence of dislocations on crystal growth. Discuss Faraday Soc 5:48–54] had put forward of the growth of crystals by means of screw dislocations. Frank's mechanism of crystal growth has been amply confirmed by experimental observations of screw dislocations in crystals, but it is a growth mechanism for a single crystal, with growth fronts of molecules. However, the growth fronts composed of many tablets of crystalline aragonite visible in micrographs of nacre are not a molecular-scale but a mesoscale phenomenon, so it has not been evident how the Frank mechanism might be of relevance. Here, we demonstrate that nacre growth is organized around a liquid-crystal core of chitin crystallites, a skeleton that the other components of nacre subsequently flesh out in a process of hierarchical self-assembly. We establish that spiral and target patterns can arise in a liquid crystal formed layer by layer through the Burton–Cabrera–Frank [Burton W, Cabrera N, Frank F (1951) The growth of crystals and the equilibrium structure of their surfaces. Philos Trans R Soc London Ser A 243:299–358] dynamics, and furthermore that this layer growth mechanism is an instance of an important class of physical systems termed excitable media. Artificial liquid crystals grown in this way may have many technological applications.
机译:Nacre是碳酸钙矿物文石的精制结构生物复合材料,具有少量蛋白质和多糖几丁质。多年来,它一直是研究的主题,不仅是因为它的美丽,而且是发现自然界如何从这种相对较弱的原材料生产出具有优异机械性能的优质产品。四十年前,Wada [Wada K(1966)珍珠母螺旋生长。 Nature 211:1427]提出珍珠层中的螺旋状图案可以通过使用Frank [Frank F(1949)Dislocation对晶体生长的影响”理论来解释。讨论Faraday Soc 5:48–54]提出了利用螺丝位错生长晶体的方法。通过晶体中螺位错的实验观察已充分证实了弗兰克晶体的生长机理,但它是具有分子生长前沿的单晶的生长机理。但是,由珍珠质显微照片上可见的许多晶体文石片组成的生长前沿不是分子尺度而是中尺度现象,因此,尚不清楚Frank机制如何与之相关。在这里,我们证明了珍珠质的生长围绕着几丁质微晶的液晶核组织,该骨架是珍珠质的其他成分随后在分层自组装过程中充实的骨架。我们确定,通过伯顿-卡布雷拉-弗兰克[Burton W,Cabrera N,Frank F(1951)晶体的生长及其表面的平衡结构,可以在一层层形成的液晶中逐层出现螺旋形和目标图案。 Philos Trans R Soc London Ser A 243:299–358]动力学,此外,该层增长机制是一类重要的物理系统(称为可激发介质)的一个实例。以这种方式生长的人造液晶可能具有许多技术应用。

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