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New insights into the early stages of silica-controlled barium carbonate crystallisation

机译:的早期阶段的新见解silica-controlled碳酸钡结晶

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摘要

Recent work has demonstrated that the dynamic interplay between silica and carbonate during co-precipitation can result in the self-assembly of unusual, highly complex crystal architectures with morphologies and textures resembling those typically displayed by biogenic minerals. These so-called biomorphs were shown to be composed of uniform elongated carbonate nanoparticles that are arranged according to a specific order over mesoscopic scales. In the present study, we have investigated the circumstances leading to the continuous formation and stabilisation of such well-defined nanometric building units in these inorganic systems. For this purpose, in situ potentiometric titration measurements were carried out in order to monitor and quantify the influence of silica on both the nucleation and early growth stages of barium carbonate crystallisation in alkaline media at constant pH. Complementarity, the nature and composition of particles occurring at different times in samples under various conditions were characterised ex situ by means of high-resolution electron microscopy and elemental analysis. The collected data clearly evidence that added silica affects carbonate crystallisation from the very beginning (i.e. already prior to, during, and shortly after nucleation), eventually arresting growth on the nanoscale by cementation of BaCO3 particles within a siliceous matrix. Our findings thus shed light on the fundamental processes driving bottom-up self-organisation in silica-carbonate materials and, for the first time, provide direct experimental proof that silicate species are responsible for the miniaturisation of carbonate crystals during growth of biomorphs, hence confirming previously discussed theoretical models for their formation mechanism.
机译:最近的研究表明,动态相互影响硅和碳酸盐共同沉淀可以导致自组装不寻常的、高度复杂的晶体结构形态和纹理类似通常由生物矿物显示。所谓生物形态显示组成均匀细长的碳酸钙纳米粒子根据一个特定的顺序排列介观尺度。调查导致的情况连续的形成和稳定定义良好的nanometric建设单位在这些无机系统。电位滴定测量为了进行监控和量化硅在成核和的影响碳酸钡的早期发展阶段结晶在碱性介质pH值恒定。互补的性质和组成粒子在不同的时间发生在样品在各种条件下的特征是前女友现场通过高分辨率电子显微镜和元素分析确证。数据明显证据表明添加硅影响碳酸结晶从一开始(即已经之前、期间和之后不久成核),最终逮捕了增长纳米颗粒胶结的尾巴在硅矩阵。驾驶的基本流程自底向上的自我组织在silica-carbonate第一次,材料和提供直接的实验证明了硅酸盐物种负责碳酸盐岩的小型化晶体在生长的生物形态,因此确认以前讨论的理论为其形成机制模型。

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