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氩、氪、氙、氮气、氧气、一氧化碳、甲烷、乙烷和丙烷从石墨烯及非晶态冰表面的解吸动力学

Desorption Kinetics of Ar, Kr, Xe, N2, O2, CO, Methane, Ethane, and Propane from Graphene and Amorphous Solid Water Surfaces.

作者信息

Smith R Scott, May R Alan, Kay Bruce D

机构信息

Physical and Computational Sciences Directorate, Pacific Northwest National Laboratory , Richland, Washington 99352, United States.

出版信息

J Phys Chem B. 2016 Mar 3;120(8):1979-87. doi: 10.1021/acs.jpcb.5b10033. Epub 2015 Dec 8.

Abstract

The desorption kinetics for Ar, Kr, Xe, N2, O2, CO, methane, ethane, and propane from graphene-covered Pt(111) and amorphous solid water (ASW) surfaces are investigated using temperature-programmed desorption (TPD). The TPD spectra for all of the adsorbates from graphene have well-resolved first, second, third, and multilayer desorption peaks. The alignment of the leading edges is consistent the zero-order desorption for all of the adsorbates. An Arrhenius analysis is used to obtain desorption energies and prefactors for desorption from graphene for all of the adsorbates. In contrast, the leading desorption edges for the adsorbates from ASW do not align (for coverages < 2 ML). The nonalignment of TPD leading edges suggests that there are multiple desorption binding sites on the ASW surface. Inversion analysis is used to obtain the coverage dependent desorption energies and prefactors for desorption from ASW for all of the adsorbates.

摘要

利用程序升温脱附(TPD)研究了Ar、Kr、Xe、N₂、O₂、CO、甲烷、乙烷和丙烷从石墨烯覆盖的Pt(111)和非晶态固体水(ASW)表面的脱附动力学。来自石墨烯的所有吸附质的TPD光谱都有分辨率良好的第一、第二、第三和多层脱附峰。所有吸附质前沿的对齐与零级脱附一致。采用阿仑尼乌斯分析来获得所有吸附质从石墨烯脱附的脱附能量和指前因子。相比之下,来自ASW的吸附质的主要脱附前沿并不对齐(对于覆盖率<2 ML)。TPD前沿的不对齐表明ASW表面存在多个脱附结合位点。采用反演分析来获得所有吸附质从ASW脱附的覆盖率依赖的脱附能量和指前因子。

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