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首页> 外文期刊>Ferroelectrics >Production and characterization of (K Na)(Nb Cu)O-3 crystal fibers grown by micro-pulling-down method
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Production and characterization of (K Na)(Nb Cu)O-3 crystal fibers grown by micro-pulling-down method

机译:通过微拉下法生长(K NA)(Nb Cu)O-3晶纤维的生产和表征

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摘要

Cu-doped sodium potassium niobate single crystal fibers (KNN-Cu) were grown by the micro-pulling-down technique under different atmospheres, namely, argon, synthetic air and oxygen. The structural analysis revealed that all fibers were grown in the perovskite phase with no secondary phase. In comparison with the precursors powders, the results from EDX showed no significative chemical changes, suggesting that monocrystalline and stoichiometric KNN-Cu fibers were produced. The ferroelectric phase transitions characterized by thermal strain measurements corroborated this assumption. The dielectric results showed that the fibers produced under synthetic air presented the best results. Piezoresponse measurements revealed domains with typically orthorhombic symmetry morphology.
机译:通过不同气氛下的微型拉压技术生长Cu掺杂的铌酸钠单晶纤维(KNN-Cu),即氩气,合成空气和氧气。 结构分析表明,所有纤维在钙钛矿相中生长,没有二次相。 与前体粉末相比,EDX的结果显示出没有意义的化学变化,表明制备单晶和化学计量的knN-Cu纤维。 其特征在于热应变测量的铁电相转变证实了这种假设。 介电结果表明,合成空气下生产的纤维呈现了最佳效果。 压电响应测量揭示了通常正交对称形态的结构域。

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