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First Order Structural Phase Transition in ZnO Nanostructures at High Pressure

机译:ZnO纳米结构在高压下的一阶结构相变

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This paper reports the results of a theoretical investigation on the compress ional behavior of ZnO nanostructures like ZnO-nanowire, ZnO-nanotube and ZnO-nanorods at high pressure during transformation from wurtzite to rock salt structure. A simple theory is proposed to predict the transition pressure (PT) of these nanomaterials, which gets support from the Mie-Gruneisen theory of thermal expansivity as formulated by Born and Huang. We have considered the Tait's equation of state to study the effect of pressure on the phase transition from wurtzite (W) to rock salt (R) phase in three nanostructures of zinc oxide material. The results obtained are found to present a good agreement with the available experimental data as well as other formulations. A good agreement between theoretical and experimental results demonstrates the validity of the equation of state used in the present study to explain the structural behavior of nanomaterials at high pressure.
机译:本文报道了在从纤锌矿向岩盐结构转变的高压下,ZnO纳米结构(如ZnO纳米线,ZnO纳米管和ZnO纳米线)的压缩行为的理论研究结果。提出了一种简单的理论来预测这些纳米材料的转变压力(PT),该理论得到了Born和Huang提出的Mie-Gruneisen热膨胀性理论的支持。我们已经考虑了泰特状态方程来研究压力对氧化锌材料的三个纳米结构中从纤锌矿(W)到岩盐(R)相的相变的影响。发现获得的结果与可用的实验数据以及其他配方呈现出良好的一致性。理论和实验结果之间的良好一致性证明了本研究中用来解释高压下纳米材料的结构行为的状态方程的有效性。

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