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The role of cations in hydrothermal synthesis of nonlinear optical sodium niobate nanocrystals

机译:水热合成的阳离子的作用非线性光学铌酸钠纳米晶体

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The usability of the alkali niobates with their ferroelectric and photorefractive properties could be expanded if the development of synthesis methods would allow to obtain small, preferably monodispersed, crystals in the sub-mu m to nanometer regime. Of all the possible synthesis methods, the most reliable is currently hydrothermal synthesis to generate small crystallite sizes of these materials. Although the products of sodium niobate are polydisperse and partially agglomerated, they show a significant SHG signal that is unexpectedly comparable to that of potassium niobate. A view on the hydrothermal synthesis of sodium niobate reveals that the incorporation of cations in the crystalline lattice of the niobium educt plays a part in the formation of the product. The occurrence of distinct different phases, as in the case of potassium niobate, is not observed. Instead, it is shown that a clear assignment of the crystalline phase cannot be made here. This indicates that crystallization of the alkali niobates in hydrothermal synthesis depends on the stoichiometry, the niobium starting material and the cation used.
机译:碱金属铌酸与他们的可用性铁电、光折变性能如果合成的发展可以扩大吗方法将允许获得小,最好单分散的,晶体在下标μm纳米政权。方法,目前最可靠水热合成生成小这些材料的微晶尺寸。铌酸钠的产品是多分散的和部分凝聚,他们显示重大意外宋惠乔信号与铌酸钾。在水热合成铌酸钠揭示了公司的阳离子晶体点阵的铌推论扮演参与产品的形成。发生明显的不同阶段,如铌酸钾的案例中,没有观察到。相反,它表明一个明确的分配结晶相不能。表明,碱的结晶铌酸盐的水热合成取决于化学计量学,铌材料和开始所使用的阳离子。

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