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Visualization of the effect of additives on the nanostructures of individual bio-inspired calcite crystals

机译:可视化添加剂对单个生物启发方解石晶体纳米结构的影响

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摘要

Soluble additives provide a versatile strategy for controlling crystallization processes, enabling selection of properties including crystal sizes, morphologies, and structures. The additive species can also be incorporated within the crystal lattice, leading for example to enhanced mechanical properties. However, while many techniques are available for analyzing particle shape and structure, it remains challenging to characterize the structural inhomogeneities and defects introduced into individual crystals by these additives, where these govern many important material properties. Here, we exploit Bragg coherent diffraction imaging to visualize the effects of soluble additives on the internal structures of individual crystals on the nanoscale. Investigation of bio-inspired calcite crystals grown in the presence of lysine or magnesium ions reveals that while a single dislocation is observed in calcite crystals grown in the presence of lysine, magnesium ions generate complex strain patterns. Indeed, in addition to the expected homogeneous solid solution of Mg ions in the calcite lattice, we observe two zones comprising alternating lattice contractions and relaxation, where comparable alternating layers of high magnesium calcite have been observed in many magnesium calcite biominerals. Such insight into the structures of nanocomposite crystals will ultimately enable us to understand and control their properties.
机译:可溶性添加剂为控制结晶过程提供了一种通用策略,从而可以选择包括晶体尺寸,形态和结构在内的各种特性。添加剂物质也可以掺入晶格内,例如导致增强的机械性能。然而,尽管有许多技术可用于分析颗粒的形状和结构,但是表征由这些添加剂引入单个晶体的结构不均匀性和缺陷仍然是一项挑战,其中这些因素控制着许多重要的材料性能。在这里,我们利用布拉格相干衍射成像来可视化可溶添加剂对纳米级单个晶体内部结构的影响。对在赖氨酸或镁离子存在下生长的生物启发方解石晶体的研究表明,虽然在赖氨酸存在下生长的方解石晶体中观察到了单个位错,但镁离子会产生复杂的应变模式。实际上,除了在方解石晶格中预期的Mg离子均匀固溶体之外,我们还观察到两个区域,包括交替的晶格收缩和弛豫,在许多方解石镁矿物质中都观察到了可比的高方解石交替层。对纳米复合晶体结构的这种洞察力最终将使我们能够理解和控制其性能。

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