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New Insights in the Hydrothermal Synthesis of Rare-Earth Carbonates

机译:水热合成稀土碳酸盐的新见解

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摘要

The rare-earth carbonates represent a class of materials with great research interest owing to their intrinsic properties and because they can be used as template materials for the formation of other rare earth phases, particularly of rare-earth oxides. However, most of the literature is focused on the synthesis and characterization of hydroxycarbonates. Conversely, in the present study we have synthesized both rare-earth carbonates—with the chemical formula RE2(CO3)3·2-3H2O, in which RE represents a generic rare-earth element, and a tengerite-type structure with a peculiar morphology—and rare-earth hydroxycarbonates with the chemical formula RECO3OH, by hydrothermal treatment at low temperature (120 °C), using metal nitrates and ammonium carbonates as raw materials, and without using any additive or template. We found that the nature of the rare-earth used plays a crucial role in relation to the formed phases, as predicted by the contraction law of lanthanides. In particular, the hydrothermal synthesis of rare-earth carbonates with a tengerite-type structure was obtained for the lanthanides from neodymium to erbium. A possible explanation of the different behaviors of lighter and heavier rare-earths is given.
机译:稀土碳酸盐由于其内在特性而代表了一类具有极大研究兴趣的材料,因为它们可用作形成其他稀土相(尤其是稀土氧化物)的模板材料。然而,大多数文献集中在羟基碳酸盐的合成和表征上。相反,在本研究中,我们合成了稀土碳酸盐-化学分子式为RE2(CO3)3·2-3H2O,其中RE表示一般稀土元素,以及具有特殊形态的辉铁矿型结构-和化学式为RECO3OH的稀土羟基碳酸盐,是在低温(120°C)下通过水热处理,使用金属硝酸盐和碳酸铵为原料,而无需使用任何添加剂或模板的。我们发现,如镧系元素的收缩定律所预测的那样,所用稀土的性质与所形成的相起着至关重要的作用。尤其是,对于钕到neo的镧系元素,水热合成具有张铁矿型结构的稀土碳酸盐。给出了对较轻和较重稀土的不同行为的可能解释。

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