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Phase transition in ZnSe at high pressures and high temperatures

机译:ZnSE的相变高压和高温

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The phase transition boundary between the zinc blende and the rock-salt structure in zinc selenide (ZnSe) was determined using high-pressure experiments combined with the synchrotron X-ray diffraction technique. Significant hysteresis in the phase transition was not observed at high temperatures. The transition pressure was extrapolated to be 13.3 GPa at 300 K, and the dP/dT slope of the phase boundary had a negative dependence of -0.0033 GPa/T. As this transition pressure was used as the pressure standard in the high-pressure experiments, the new value influences a wide range of high-pressure science. This negative dependence is similar to those of semiconductor-metal transitions, such as ZnS, GaAs, and GaP. We found a linear relationship between the semiconductor-metal transition pressures and dP/dT slopes in II-VI and III-V compounds.
机译:使用高压实验与同步旋流X射线衍射技术相结合测定硒化物(ZnSe)中的锌混合物和岩盐结构之间的相变边界。 在高温下未观察到相转变中的显着滞后。 将过渡压力推断为300K的13.3GPa,相边界的DP / DT斜率具有-0.0033GPa / t的负依赖性。 由于这种过渡压力用作高压实验中的压力标准,因此新价值影响广泛的高压科学。 这种负依赖性类似于半导体 - 金属转换,例如ZnS,GaAs和间隙。 我们发现II-VI和III-V化合物中的半导体 - 金属转变压力和DP / DT斜率之间的线性关系。

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