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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Microwave hydrothermal synthesis and characterization of rare-earth stannate nanoparticles
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Microwave hydrothermal synthesis and characterization of rare-earth stannate nanoparticles

机译:稀土锡纳米粒子的微波水热合成与表征

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摘要

Rare-earth stannate (Ln(2)Sn(2)O(7) (Ln = Y, La-Lu)) nanocrystals with an average diameter of 50 nm were prepared through a facile microwave hydrothermal method at 200A degrees C within 60 min. The products were well characterized. The effect of reaction parameters such as temperature, reaction time, pH value, and alkali source on the preparation was investigated. The results revealed that the pH value plays an important role in the formation process of gadolinium stannate (Gd2Sn2O7) nanoparticles. By contrast, the alkali source had no effect on the phase composition or morphology of the final product. Uniform and sphere-like nanoparticles with an average size of approximately 50 nm were obtained at the pH value of 11.5. A possible formation mechanism was briefly proposed. Gd2Sn2O7:Eu3+ nanoparticles displayed strong orange-red emission. Magnetic measurements revealed that Gd2Sn2O7 nanoparticles were paramagnetic. The other rare-earth stannate Ln(2)Sn(2)O(7) (Ln = Y, La-Lu) nanocrystals were prepared by similar approaches.
机译:稀土静止(2)Sn(2)O(7)(LN = Y,La-Lu)通过在60分钟内在200A C中的体微波水热方法制备平均直径为50nm的纳米晶体。产品表征得很好。研究了反应参数如温度,反应时间,pH值和碱源对制剂进行的影响。结果表明,pH值在钆静脉(GD2SN2O7)纳米颗粒的形成过程中起重要作用。相比之下,碱源对最终产品的相组成或形态没有影响。在pH值为11.5的pH值下获得平均尺寸约为50nm的均匀和球状纳米颗粒。简要提出了一种可能的地层机制。 GD2SN2O7:EU3 +纳米粒子显示出强烈的橙红色排放。磁性测量显示Gd2SN2O7纳米颗粒是顺磁性的。通过类似的方法制备另一个稀土静体Ln(2)Sn(2)O(2)O(7)(Ln = Y,La-Lu)纳米晶体。

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