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碳酸镁水合物的温度和pH依赖性形态及傅里叶变换红外光谱分析

Temperature- and pH-dependent morphology and FT-IR analysis of magnesium carbonate hydrates.

作者信息

Zhang Zhiping, Zheng Yajun, Ni Yuwen, Liu Zhongmin, Chen Jiping, Liang Xinmiao

机构信息

Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian 116023, China.

出版信息

J Phys Chem B. 2006 Jul 6;110(26):12969-73. doi: 10.1021/jp061261j.

Abstract

Various morphologies of magnesium carbonate hydrates have been synthesized by carefully adjusting the reaction temperature and pH value of the initial reaction solution in the precipitation process. At lower temperatures (from room temperature to 328 K) and lower pH values (variation with the reaction temperature), magnesium carbonate hydrates are prone to display needlelike morphology, and the axis diameter of the particles decreases with the increase of reaction temperature and pH value. With the further increase of the reaction temperature (333-368 K) and pH value, the sheetlike crystallites become the preferred morphology, and at higher temperatures and pH values, these crystallites tend to assemble into layerlike structures with diverse morphologies, such as spherical-like particles with rosette-like structure and cakelike particles built from sheetlike structure. Fourier transform infrared (FT-IR) spectra show that these various morphologies are closely related to their compositions. The needlelike magnesium carbonate hydrate has a formula of MgCO3.xH2O, in which the value x is greatly affected by the experimental conditions, whereas with the morphological transformation from needlelike to sheetlike structure, their corresponding compositions also change from MgCO3.xH2O to Mg5(CO3)4(OH)2.4H2O in the interval of 328-333 K.

摘要

通过在沉淀过程中仔细调节初始反应溶液的反应温度和pH值,合成了各种形态的碳酸镁水合物。在较低温度(从室温到328 K)和较低pH值(随反应温度变化)下,碳酸镁水合物易于呈现针状形态,且颗粒的轴径随反应温度和pH值的升高而减小。随着反应温度(333 - 368 K)和pH值的进一步升高,片状微晶成为主要形态,并且在更高的温度和pH值下,这些微晶倾向于组装成具有多种形态的层状结构,例如具有玫瑰状结构的球状颗粒和由片状结构构建的蛋糕状颗粒。傅里叶变换红外(FT - IR)光谱表明,这些不同的形态与其组成密切相关。针状碳酸镁水合物的化学式为MgCO3·xH2O,其中x值受实验条件的影响很大,而随着形态从针状转变为片状结构,它们相应的组成在328 - 333 K的区间内也从MgCO3·xH2O变为Mg5(CO3)4(OH)2·4H2O。

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