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首页> 外文期刊>Crystal Research and Technology: Journal of Experimental and Industrial Crystallography >Phase-controlled crystallization of amorphous calcium carbonate in ethanol-water binary solvents
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Phase-controlled crystallization of amorphous calcium carbonate in ethanol-water binary solvents

机译:无水碳酸钙在乙醇-水二元溶剂中的相控结晶

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摘要

The evolution of amorphous calcium carbonate (ACC) into crystals in ethanol/water binary solvents under ambient temperature was investigated, and it was found to depend on the volume ratio of ethanol to water (R). Calcite remained dominant when the amount of water was high (R = 1/3). A slight change in the amount of ethanol (R = 3/1) could lead to a dramatic change in the polymorph from calcite to aragonite. However, when poly (allylamine hydrochloride) (PAH) was added at R = 3/1, almost pure vaterite could be obtained, which has a specific morphological variation (from hollow microspheres to cloud-like). This study provides an alternative polymorphic route for the CaCO3 mineral by using the evolution of ACC in different solvent environments, which provides some useful clues for understanding the importance of kinetic control of the morphologies and polymorphs of a wide range of inorganic materials. In addition, this simple mild phase-controlled synthetic method could be scaled up as a green chemistry route for the industrial production of different polymorphs of CaCO3.
机译:研究了在室温下乙醇/水二元溶剂中无定形碳酸钙(ACC)演变为晶体的过程,发现其取决于乙醇与水(R)的体积比。水含量高时(R = 1/3),方解石仍占主导地位。乙醇量的微小变化(R = 3/1)可能导致多晶型物从方解石到文石的急剧变化。但是,当以R = 3/1添加聚(烯丙胺盐酸盐)(PAH)时,可以获得几乎纯的球ate石,其具有特定的形态变化(从空心微球到云状)。这项研究通过使用ACC在不同溶剂环境中的演化,为CaCO3矿物提供了另一种多态性途径,这为理解动力学控制各种无机材料的形态和多晶型的重要性提供了一些有用的线索。此外,这种简单的温和相控合成方法可以扩大规模,作为绿色化学路线,用于工业化生产各种多晶型碳酸钙。

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