A mechanism of H2 uptake, based on adsorption in the ordered cavities of nanoporous polymeric crystalline phases rather than on disordered amorphous polymeric surfaces, has been clearly established, for aerogels of syndiotactic polystyrene (s-PS) exhibiting the nanoporous δ phase. An ordered arrangement of the H2 molecules is proven by FTIR spectra while the inclusion of H2 is assessed by gravimetric measurements and molecular simulations. © 2010 The Owner Societies.

Storage of hydrogen as a guest of a nanoporous polymeric crystalline phase / Figueroa-Gerstenmaier, S.; Daniel, C.; Milano, G.; Guerra, G.; Zavorotynska, O.; Vitillo, J. G.; Zecchina, A.; Spoto, G.. - In: PHYSICAL CHEMISTRY CHEMICAL PHYSICS. - ISSN 1463-9076. - 12:20(2010), pp. 5369-5374. [10.1039/b923173k]

Storage of hydrogen as a guest of a nanoporous polymeric crystalline phase

Milano G.;
2010

Abstract

A mechanism of H2 uptake, based on adsorption in the ordered cavities of nanoporous polymeric crystalline phases rather than on disordered amorphous polymeric surfaces, has been clearly established, for aerogels of syndiotactic polystyrene (s-PS) exhibiting the nanoporous δ phase. An ordered arrangement of the H2 molecules is proven by FTIR spectra while the inclusion of H2 is assessed by gravimetric measurements and molecular simulations. © 2010 The Owner Societies.
2010
Storage of hydrogen as a guest of a nanoporous polymeric crystalline phase / Figueroa-Gerstenmaier, S.; Daniel, C.; Milano, G.; Guerra, G.; Zavorotynska, O.; Vitillo, J. G.; Zecchina, A.; Spoto, G.. - In: PHYSICAL CHEMISTRY CHEMICAL PHYSICS. - ISSN 1463-9076. - 12:20(2010), pp. 5369-5374. [10.1039/b923173k]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/919392
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