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首页> 外文期刊>Journal of the Physical Society of Japan >The first observation of low-frequency Raman spectra of supercritical water
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The first observation of low-frequency Raman spectra of supercritical water

机译:超临界水的低频拉曼光谱的首次观察

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摘要

Low-frequency Raman spectra of liquid water from -250 to 250 cm(-1) towards to and above the supercritical point have been observed and analyzed by using the multiple random telegraph model (MRT) relaxation function. The 180 cm(-1) band has vanished with increasing temperature with constant pressure at 25 MPa. This is due to the destruction of hydrogen-bonds. The obtained relaxation time first decreases and then increases from about 260 degrees C (433K) with increasing temperature toward to the supercritical state. This behavior is consistent with that of the dielectric relaxation time.
机译:通过使用多重随机电报模型(MRT)弛豫函数,观察到并分析了从-250到250 cm(-1)朝着超临界点及以上的液态水的低频拉曼光谱。在25 MPa的恒定压力下,随着温度的升高,180 cm(-1)的带消失了。这是由于氢键的破坏。所获得的弛豫时间首先随着温度的升高从大约260摄氏度(433K)开始减小,然后逐渐增加至超临界状态。此行为与介电弛豫时间一致。

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