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The effect of the incident collision energy on the phase and crystallization kinetics of vapor deposited water films

机译:入射碰撞能量对气相沉积水膜的相和结晶动力学的影响

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Molecular beam techniques are used to grow water films on Pt(111)with incident collision energies from 5 to 205 kJ/mole.The effect of the incident collision energy on the phase of vapor deposited water films and their subsequent crystallization kinetics are studied using temperature programed desorption and infrared spectroscopy.We find that for films deposited at substrate temperatures below 110 K,the incident kinetic energy (up to 205 kJ/mole)has no effect on the initial phase of the deposited film or its crystallization kinetics.Above 110 K,the substrate temperature does affect the phase and crystallization kinetics of the deposited films but this result is also independent of the incident collision energy.The presence of a crystalline ice template (underlayer)does affect the crystallization of amorphous solid water,but this effect is also independent of the incident beam energy.These results suggest that the crystallization of amorphous solid water requires cooperative motion of several water molecules.
机译:分子束技术用于在Pt(111)上以5至205 kJ / mol的入射碰撞能量生长水膜。利用温度研究了入射碰撞能量对气相沉积水膜的相及其后续结晶动力学的影响我们发现,对于在低于110 K的衬底温度下沉积的薄膜,入射动能(高达205 kJ / mole)对沉积薄膜的初始阶段或其结晶动力学没有影响。在110 K以上,基板温度确实会影响沉积膜的相和结晶动力学,但该结果也与入射碰撞能量无关。结晶冰模板(下层)的存在确实会影响非晶态固体水的结晶,但这种作用是这些结果表明无定形固体水的结晶需要硒的协同运动。真水分子。

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