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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Investigation into Structural Phase Transitions in Layered Titanium-Oxypnictides by a Computational Phonon Analysis
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Investigation into Structural Phase Transitions in Layered Titanium-Oxypnictides by a Computational Phonon Analysis

机译:计算声子分析对层状钛 - 氧气氧化酯的结构相转变的研究

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摘要

We applied ab initio phonon analysis to layered titanium-oxypnictides, Na(2)Ti(2)Pn(2)O (Pn = As and Sb), and found a clear contrast between the cases with lighter/heavier pnictogen in comparison with experiments. The result completely explains the experimental structure at low temperature, C2/m for Pn = As, within the conventional charge density wave, while there arise discrepancies when the pnictogen gets heavier. Our phonon calculation using the GGA-PBE functional predicts that a Cmce polymorph is more stable than the experimentally observed one (Cmcrn) for Pn = Sb. On the basis of further quantitative analysis, we suggest the possibility that the GGA-PBE functional does not properly reproduce the electron correlation effects for Pn = Sb, and this could be the reason for the present discrepancy.
机译:我们将AB InitioPhonon分析应用于分层钛 - 氧基溶剂,Na(2)Ti(2)PN(2)O(PN = AS和Sb),并与实验相比,较轻/较重的肺炎病例之间的明显对比度 。 结果完全解释了低温下的实验结构,对于Pn =,在常规电荷密度波内,在常规电荷密度波内,而当肺泡变得较重时出现差异。 我们使用GGA-PBE功能的声音计算预测CMCE多晶型物比实验观察到的PN = SB的一个(CMCRN)更稳定。 在进一步定量分析的基础上,我们建议GGA-PBE功能不适当地再现PN = Sb的电子相关效果的可能性,这可能是当前差异的原因。

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