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TEMPERATURE-DEPENDENT ADSORPTION OF HYDROGEN, DEUTERIUM, AND NEON ON POROUS VYCOR GLASS

机译:多孔Vycor玻璃上氢,氘和氖的温度依赖性吸附

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Adsorption isotherms of H-2, D-2, and Ne have been measured in the temperature range from 15 K to the corresponding critical points in samples of porous Vycor glass. From the Brunauer-Emmett-Teller theory the surface layer coverages are determined. These are found to be temperature dependent. A model-independent approach allows us to fit the data for coverages ranging from submonolayer to thin film, below capillary condensation, for each adsorbate at all temperatures with a temperature-independent curve. This characteristic curve represents the distribution of adsorption sites versus the adsorption potential. In the intermediate coverage range, the isotherms exhibit the modified Frenkel-Halsey-Hill (FHH) behavior. The adsorption saturates for low-adsorption potentials. The characteristic curve is a useful universal curve since it is roughly the same for the three species investigated. We examine the relative strengths of the surface potentials and densities of the two isotopic modifications of hydrogen and of the more classical Ne adsorbed on porous Vycor glass. The characteristic adsorption curve is compared with results from two models for the adsorbate: Dubinin's isotherm for microporous solids and its extension to rough surfaces which places importance on the porosity of the surface, and Halsey's model, which is an extension of the FHH isotherm that takes into account the long-range variations of substrate adsorption potential. [References: 46]
机译:在15 K到多孔Vycor玻璃样品的相应临界点的温度范围内,已测量到H-2,D-2和Ne的吸附等温线。根据Brunauer-Emmett-Teller理论确定表面层覆盖率。发现它们与温度有关。独立于模型的方法使我们可以拟合温度范围从亚单层到薄膜的数据,在毛细管冷凝作用下,所有温度下每种被吸附物的温度均独立于曲线。该特征曲线表示吸附位点相对于吸附电位的分布。在中等覆盖范围内,等温线表现出改良的Frenkel-Halsey-Hill(FHH)行为。对于低吸附电位,吸附饱和。特征曲线是有用的通用曲线,因为它与所研究的三个物种大致相同。我们研究了氢和更经典的Ne吸附在多孔Vycor玻璃上的两种同位素修饰的表面势和密度的相对强度。将特征吸附曲线与两种被吸附物模型的结果进行了比较:Dubinin等温线用于微孔固体及其扩展到粗糙表面,这对表面的孔隙率非常重要; Halsey模型是对FHH等温线的扩展,采用等温线考虑到底物吸附电位的长期变化。 [参考:46]

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