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Structural Phase Transformations of ZnS Nanocrystalline Under High Pressure

机译:高压下ZnS纳米晶的结构相变

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摘要

In-situ energy dispersive x-ray diffraction on ZnS nanocrystalline was carried out under high pressure by using a diamond anvil cell. Phase transition of wurtzite of 10 nm ZnS to rocksalt occurred at 16.0 GPa, which was higher than that of the bulk materials. The structures of ZnS nanocrystalline at different pressures were built by using materials studio and the bulk modulus, and the pressure derivative of ZnS nanocrystalline were derived by fitting the equation of Birch-Murnaghan. The resulting modulus was higher than that of the corresponding bulk material, which indicates that the nanomaterial has higher hardness than its bulk materials.
机译:使用金刚石砧盒在高压下对ZnS纳米晶体进行原位能量色散X射线衍射。 10 nm ZnS纤锌矿向岩石盐的相变发生在16.0 GPa,高于块状材料。利用材料工作室建立了ZnS纳米晶在不同压力下的结构,并利用其体积模量,通过拟合Birch-Murnaghan方程,推导了ZnS纳米晶的压力导数。所得模量高于相应的块状材料的模量,这表明纳米材料比其块状材料具有更高的硬度。

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