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Structural transformation of Sb-based high-speed phase-change material

机译:锑基高速相变材料的结构转变

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The crystal structure of a phase-change recording material (the compound Ag3.4In3.7Sb76.4Te16.5) enclosed in a vacuum capillary tube was investigated at various temperatures in a heating process using a large Debye-Scherrer camera installed in BL02B2 at SPring-8. The amorphous phase of this material turns into a crystalline phase at around 416 K; this crystalline phase has an A7-type structure with atoms of Ag, In, Sb or Te randomly occupying the 6c site in the space group. This structure was maintained up to around 545 K as a single phase, although thermal expansion of the crystal lattice was observed. However, above this temperature, phase separation into AgInTe2 and Sb-Te transpired. The first fragment, AgInTe2, reliably maintained its crystal structure up to the melting temperature. On the other hand, the atomic configuration of the Sb-Te gradually varied with increasing temperature. This gradual structural transformation can be described as a continuous growth of the modulation period.
机译:使用安装在SP02的BL02B2中的大型Debye-Scherrer摄像机在加热过程中的各种温度下研究了封装在真空毛细管中的相变记录材料(化合物Ag3.4In3.7Sb76.4Te16.5)的晶体结构。 -8。这种材料的非晶态相在416 K附近变成结晶相;该结晶相具有A7型结构,其中Ag,In,Sb或Te原子随机占据空间组的6c位。尽管观察到了晶格的热膨胀,但该结构作为单相保持高达约545K。但是,在此温度以上,会发生相分离成AgInTe2和Sb-Te。第一个片段AgInTe2可以可靠地保持其晶体结构直至熔化温度。另一方面,Sb-Te的原子构型随温度升高而逐渐变化。这种逐渐的结构转变可以描述为调制周期的连续增长。

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