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Deposition and crystallization studies of thin amorphous solid water films on Ru(0001) and on CO-precovered Ru(0001)

机译:Ru(0001)和CO包覆的Ru(0001)上非晶态固体水薄膜的沉积和结晶研究

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摘要

The deposition and the isothermal crystallization kinetics of thin amorphous solid water (ASW) films on both Ru(0001) and CO-precovered Ru(0001) have been investigated in real time by simultaneously employing helium atom scattering, infrared reflection absorption spectroscopy, and isothermal temperature-programmed desorption. During ASW deposition, the interaction between water and the substrate depends critically on the amount of preadsorbed CO. However, the mechanism and kinetics of the crystallization of ~50 layers thick ASW film were found to be independent of the amount of preadsorbed CO. We demonstrate that crystallization occurs through random nucleation events in the bulk of the material, followed by homogeneous growth, for solid water on both substrates. The morphological change involving the formation of three-dimensional grains of crystalline ice results in the exposure of the water monolayer just above the substrate to the vacuum during the crystallization process on both substrates.
机译:同时利用氦原子散射,红外反射吸收光谱和等温技术,实时研究了Ru(0001)和CO包覆的Ru(0001)上非晶态固态水(ASW)薄膜的沉积和等温结晶动力学。程序升温解吸。在ASW沉积过程中,水与基材之间的相互作用主要取决于预吸附的CO的量。但是,发现约50层厚的ASW膜的结晶机理和动力学与预吸附的CO的量无关。我们证明了两种材料中的固体水均通过随机成核事件发生结晶,然后均匀生长。涉及形成结晶冰的三维晶粒的形态变化导致在两个衬底上的结晶过程中,恰好衬底上方的水单层暴露于真空。

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