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首页> 外文期刊>Physical review >Polymorphism in phase-change materials: melt-quenched and as-deposited amorphous structures in Ge_2Sb_2Te_5 from density functional calculations
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Polymorphism in phase-change materials: melt-quenched and as-deposited amorphous structures in Ge_2Sb_2Te_5 from density functional calculations

机译:相变材料中的多态性:Ge_2Sb_2Te_5中的熔融淬火和沉积态非晶结构,通过密度泛函计算

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The as-deposited (AD) amorphous structure of the prototype phase change material Ge_2Sb_2Te_5 (GST-225) has been studied by density functional calculations for a 648-atom sample generated by computer-aided deposition at 300 K. The AD sample differs from a melt-quenched (MQ) sample in essential ways: (1) Ge atoms are predominantly tetrahedrally coordinated, and (2) homopolar and Ge-Sb bonds are more common and reduce the number of ABAB squares (A = Ge, Sb; B = Te), the characteristic building blocks of the material. The first observation resolves the contradiction between measured (EXAFS) and calculated Ge-Te bond lengths, and the latter explains the very different crystallization speeds. Sb and Te have higher chemical coordination than suggested by the "8-iV rule" of covalent networks (N is the number of valence electrons). The EXAFS signal calculated for AD agrees much better with experiment than that calculated for MQ.
机译:原型相变材料Ge_2Sb_2Te_5(GST-225)的沉积态(AD)非晶态结构已通过密度函数计算,研究了在300 K下通过计算机辅助沉积生成的648个原子样品。熔融淬火(MQ)样品的基本方法:(1)Ge原子主要为四面体配位的;(2)同极性和Ge-Sb键更常见,并减少ABAB正方形的数量(A = Ge,Sb; B = Te),材料的特征构造块。第一个观察结果解决了实测(EXAFS)与计算出的Ge-Te键长之间的矛盾,后者解释了非常不同的结晶速度。 Sb和Te具有比共价网络的“ 8-iV规则”所建议的更高的化学配位(N为价电子数)。为AD计算的EXAFS信号在实验中要比对MQ计算的信号好得多。

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