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LIQUID WATER IN THE DOMAIN OF CUBIC CRYSTALLINE ICE I-C

机译:立方冰I-C域中的液态水

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Vapor-deposited amorphous water ice, when warmed above the glass transition temperature (120-140 K), is a viscous liquid which exhibits a viscosity vs temperature relationship different from that of liquid water at room temperature. New studies of thin water ice films now demonstrate that viscous liquid water persists in the temperature range 140-210 K, where it coexists with cubic crystalline ice. The liquid character of amorphous water above the glass transition is demonstrated by (1) changes in the morphology of water ice films on a nonwetting surface observed in transmission electron microscopy (TEM) at around 175 K during slow warming, (2) changes in the binding energy of water molecules measured in temperature programmed desorption (TPD) studies, and (3) changes in the shape of the 3.07 mu m absorption band observed in,orating angle reflection-absorption infrared spectroscopy (RAIRS) during annealing at high temperature, whereby the decreased roughness of the water surface is thought to cause changes in the selectin rules for the excitation of O-H stretch vibrations, Because it is present over such a wide range of temperatures, we propose that this form of liquid water is a common material in nature, where it is expected to exist in the subsurface layers of comets and on the surfaces of some planets and satellites, (C) 1997 American Institute of Physics. [References: 45]
机译:蒸气沉积的无定形水冰,当加热到玻璃化转变温度(120-140 K)以上时,是一种粘稠的液体,其粘度与温度的关系不同于室温下的液态水。现在,对薄水冰膜的新研究表明,粘性液态水在140-210 K的温度范围内持续存在,并与立方晶状冰共存。在玻璃化转变温度之上的无定形水的液体特征由(1)缓慢升温期间在175 K左右的透射电子显微镜(TEM)中观察到的非润湿表面上水冰膜的形态变化所证实,(2)在程序升温解吸(TPD)研究中测得的水分子的结合能,以及(3)在高温退火过程中在角度反射吸收红外光谱(RAIRS)中观察到的3.07μm吸收带的形状变化,从而水表面粗糙度的降低被认为会引起OH拉伸振动激发的选择规则的变化,因为它存在于如此宽的温度范围内,所以我们建议这种形式的液态水是自然界中的一种常见物质(C)1997美国物理研究所,它有望存在于彗星的地下层以及一些行星和卫星的表面。 [参考:45]

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