Abstract
Three molecular mechanisms for gas uptake in a solvent confined in mesopores are identified. On the one hand, CO2 uptake is an adsorption-driven phenomenon that arises from the strong interaction between the gas molecules and the pore surface. On the other hand, H2 uptake is a confinement-induced enhanced solubility in which solubility is favored in the regions of low solvent density formed by the layering of the solvent. In partially filled pores, adsorption at the gas/liquid solvent interface is a third mechanism that leads to large gas uptakes. This study, which sheds light on previously reported yet unclear oversolubility in pores, provides a guide to design hybrid porous catalysts consisting of a solvent confined in a porous solid. © 2013 American Chemical Society.
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Ho, L. N., Clauzier, S., Schuurman, Y., Farrusseng, D., & Coasne, B. (2013). Gas uptake in solvents confined in mesopores: Adsorption versus enhanced solubility. Journal of Physical Chemistry Letters, 4(14), 2274–2278. https://doi.org/10.1021/jz401143x
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