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Pressure-Induced Phase Transitions of Hydrous Zirconium Tetrafluoride

机译:压力诱导的含水锆四氟化锆的相变

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The high pressure behaviors of hydrous zirconium tetrafluoride have been investigated by in situ synchrotron X-ray diffraction, Raman spectroscopy and infrared (IR) absorption measurements. The phase transition occurs under high pressure (0-28 GPa). The phase transforms into phase at 7.3 GPa and then phase at 13.2 GPa. The high pressure phase can be quenched to the starting phase when pressure is releasing to 0 GPa, indicating the reversible phase transition. Furthermore with increasing pressure, fluid molecular water occurs around 11.0 GPa from starting structurally bonded water state according to IR absorption which offer a clue to obtain pury anhydrous salts because of instability of hydrous zirconium tetrafluoride under ambient conditions.
机译:通过原位同步调节X射线衍射,拉曼光谱和红外(IR)吸收测量研究了含水锆四氟化锆的高压行为。 相变在高压(0-28GPa)下发生。 该相在7.3GPa的相中变为相,然后在13.2GPa下相。 当压力释放到0GPa时,可以将高压相猝灭到起始阶段,指示可逆相转变。 此外,随着压力的增加,根据IR吸收从起始的结构键合水状态下,流体分子水发生约11.0GPa,这提供了根据环境条件下含水锆四氟化锆的不稳定性的线索,得到纯无水盐。

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