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Remarkable transition from rocksalt/perovskite layered structure to fluorite/rocksalt layered structure in rapidly cooled Ln2CuO4

机译:在快速冷却的Ln2CuO4中从岩盐/钙钛矿层状结构到萤石/岩盐层状结构的显着转变

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摘要

Lanthanide cuprates of formula Ln2CuO4 exist in two principal forms, T and T′ which are renowned for their exhibition at low temperatures of hole and electronic types of superconductivity, respectively. These structures differ primarily in the arrangement of oxygen between the perovskite layers and also in nature of the copper oxygen planes. The Cu-O distance in the T structure (~1.90 Å) is much shorter than the T′ (1.97Å), reflecting a transition between partial Cu+ and partial Cu3+ character. In seeking to find compositions that bridge these two structure/electron carrier types, we observed the transition from a T structure to a T′ type structure, resulting in the metastable form T″ with slightly larger volume but similar character to T′. This transition from T to T″ is associated with 5% increase in a and a 5% decrease in c parameters of the tetragonal unit cells, which results in disintegration of ceramic bodies.
机译:分子式为Ln2CuO4的镧系铜酸盐以T和T'两种主要形式存在,它们分别以在空穴的低温下显示和电子超导电性而闻名。这些结构的主要区别在于钙钛矿层之间的氧排列以及铜氧平面的性质不同。 T结构中的Cu-O距离(〜1.90Å)比T'(1.97Å)短得多,反映出部分Cu + 和部分Cu 3 + 字符。在寻求找到桥接这两种结构/电子载流子类型的组成时,我们观察到了从T结构到T'型结构的过渡,导致了亚稳形式T''的体积略大,但特性与T'相似。从T到T''的过渡与四边形晶胞的a参数增加5%和c参数减少5%有关,这导致陶瓷体崩解。

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