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首页> 外文期刊>The Journal of Chemical Physics >The adsorption and desorption of ethanol ices from a model grain surface
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The adsorption and desorption of ethanol ices from a model grain surface

机译:乙醇冰从模型颗粒表面的吸附和解吸

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Reflection absorption infrared spectroscopy (RAIRS) and temperature programed desorption (TPD) have been used to probe the adsorption and desorption of ethanol on highly ordered pyrolytic graphite (HOPG) at 98 K. RAIR spectra for ethanol show that it forms physisorbed multilayers on the surface at 98 K. Annealing multilayer ethanol ices (exposures > 50 L) beyond 120 K gives rise to a change in morphology before crystallization within the ice occurs. TPD shows that ethanol adsorbs and desorbs molecularly on the HOPG surface and shows four different species in desorption. At low coverage, desorption of monolayer ethanol is observed and is described by first-order kinetics. With increasing coverage, a second TPD peak is observed at a lower temperature, which is assigned to an ethanol bilayer. When the coverage is further increased, a second multilayer, less strongly bound to the underlying ethanol ice film, is observed. This peak dominates the TPD spectra with increasing coverage and is characterized by fractional-order kinetics and a desorption energy of 56.3 +/- 1.7 kJ mol(-1). At exposures exceeding 50 L, formation of crystalline ethanol is also observed as a high temperature shoulder on the TPD spectrum at 160 K. (c) 2008 American Institute of Physics.
机译:反射吸收红外光谱(RAIRS)和程序升温脱附(TPD)已用于探测乙醇在98 K的高度有序热解石墨(HOPG)上的吸附和脱附。乙醇的RAIR光谱表明,乙醇在表面形成了物理吸附的多层温度在98 K时进行。将多层乙醇冰(暴露> 50 L)暴露在120 K以上会在冰中发生结晶之前引起形态变化。 TPD显示乙醇在HOPG表面上分子吸附和解吸,并且在解吸中显示出四种不同的物质。在低覆盖率下,观察到单层乙醇的解吸,并由一级动力学描述。随着覆盖率的增加,在较低温度下观察到第二个TPD峰,该峰属于乙醇双层。当覆盖率进一步增加时,观察到第二层,其与下面的乙醇冰膜的结合力较弱。该峰主导了TPD光谱,覆盖范围不断扩大,其特征在于分数阶动力学和56.3 +/- 1.7 kJ mol(-1)的解吸能。当暴露量超过50 L时,在TPD光谱上160 K处也观察到结晶乙醇的形成是高温肩峰。(c)2008美国物理研究所。

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