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首页> 外文期刊>The Journal of Chemical Physics >Communication: Distinguishing between bulk and interface-enhanced crystallization in nanoscale films of amorphous solid water
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Communication: Distinguishing between bulk and interface-enhanced crystallization in nanoscale films of amorphous solid water

机译:通信:区分散装和界面增强的无定形固体水膜中的结晶

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The crystallization of amorphous solid water (ASW) nanoscale films was investigated using reflection absorption infrared spectroscopy. Two ASW film configurations were studied. In one case the ASW film was deposited on top of and capped with a decane layer ("sandwich" configuration). In the other case, the ASW film was deposited on top of a decane layer and not capped ("no cap" configuration). Crystallization of ASW films in the "sandwich" configuration is about eight times slower than in the "no cap." Selective placement of an isotopic layer (5% D2O in H2O) at various positions in an ASW (H2O) film was used to determine the crystallization mechanism. In the "sandwich" configuration, the crystallization kinetics were independent of the isotopic layer placement whereas in the "no cap" configuration the closer the isotopic layer was to the vacuum interface, the earlier the isotopic layer crystallized. These results are consistent with a mechanism whereby the decane overlayer suppresses surface nucleation and provide evidence that the observed ASW crystallization in "sandwich" films is the result of uniform bulk nucleation. Published by AIP Publishing.
机译:使用反射吸收红外光谱研究了无定形固体水(ASW)纳米级膜的结晶。研究了两个ASW电影配置。在一个情况下,ASW薄膜沉积在顶部并用癸烷层盖上(“夹心”配置)。在另一个情况下,ASW胶片沉积在癸烷层的顶部而不是盖上(“没有盖子”配置)。 “三明治”配置中ASW膜的结晶约为慢于“无盖”速度速度幅度幅度幅度较慢。使用ASW(H2O)膜中各个位置的同位素层(5%D2O在H 2 O中的选择性放置来确定结晶机制。在“夹心”配置中,结晶动力学与同位素层放置无关,而在“无盖子”构型中,同位素层越近真空界面,则同位素层结晶。这些结果与该机构一致,其中癸烷覆盖物抑制表面成核并提供了据观察到的“夹心”膜结晶是均匀散装成核的结果。通过AIP发布发布。

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