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首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Stability limit of the layered-perovskite structure in Ln2Ti2O7 (Ln = lanthanide) thin films grown on (HO)-oriented SrTiO3 substrates by the sol-gel route
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Stability limit of the layered-perovskite structure in Ln2Ti2O7 (Ln = lanthanide) thin films grown on (HO)-oriented SrTiO3 substrates by the sol-gel route

机译:通过溶胶-凝胶法在(HO)取向的SrTiO3衬底上生长的Ln2Ti2O7(Ln =镧系元素)薄膜中层状钙钛矿结构的稳定性极限

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The stability limit between the layered-perovskite and pyrochlore structures was investigated for Ln2Ti2O7 (Ln = lanthanide) thin films grown on (HO)-oriented SrTiO3 substrate by the sol-gel route. In bulk, for standard conditions of pressure and temperature, these oxides adopt the layered-perovskite structure for Ln = La to Nd while they crystallize in the pyrochlore one for Sm to Lu. When grown in thin films on (110)-oriented SrTiO3 substrates, the frontier separating these two structures is shifted. High-resolution X-ray diffraction measurements evidence the stabilization of a metastable (00/) oriented layered-perovskite structure for Sm~2Ti2O7, Eu2Ti2O7 and Gd2Ti2O7. Such stabilization is explained by a combination of both the strains induced by the substrate in the film and the good lattice match between the substrate and the metastable layered-perovskite oxide. The stabilization of layered-perovskite structures in thin films opens interesting perspectives in terms of development of new ferroelectric/piezoelectric devices, keeping in mind that the isostructural La2Ti2O7 and Nd2Ti2O7 possess a very high Curie temperature (T_c ~ 1500 °C). Finally, the role played by the lanthanide precursor (nitrate or chloride) in the stabilization of the layered-perovskite structure is highlighted and prediction for stabilization of other new layered-perovskite compounds in the Ln2B2O7 (B = Zr, Mn) system for thin films deposited on the (110)-oriented SrTiO3 substrate is reported.
机译:通过溶胶-凝胶法研究了在(HO)取向的SrTiO3衬底上生长的Ln2Ti2O7(Ln =镧系元素)薄膜的钙钛矿和烧绿石层状结构之间的稳定性极限。总体上,对于标准的压力和温度条件,这些氧化物采用层状钙钛矿结构形成Ln = La到Nd,而在烧绿石中以Sm到Lu的形式结晶。当在(110)取向的SrTiO3衬底上以薄膜形式生长时,分离这两种结构的前沿发生了变化。高分辨率X射线衍射测量证明Sm〜2Ti2O7,Eu2Ti2O7和Gd2Ti2O7具有亚稳态(00 /)取向层状钙钛矿结构的稳定性。这种稳定作用是由膜中基材引起的应变和基材与亚稳层状钙钛矿氧化物之间良好晶格匹配的结合来解释的。薄膜中钙钛矿层状结构的稳定化为新型铁电/压电器件的开发开辟了有趣的前景,同时要记住同构La2Ti2O7和Nd2Ti2O7具有很高的居里温度(T_c〜1500°C)。最后,强调了镧系元素前体(硝酸盐或氯化物)在层状钙钛矿结构稳定中的作用,并预测了在薄膜的Ln2B2O7(B = Zr,Mn)系统中其他新的层状钙钛矿化合物的稳定化预测据报道沉积在(110)取向的SrTiO3衬底上。

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