Les Inscriptions à la Bibliothèque sont ouvertes en
ligne via le site: https://biblio.enp.edu.dz
Les Réinscriptions se font à :
• La Bibliothèque Annexe pour les étudiants en
2ème Année CPST
• La Bibliothèque Centrale pour les étudiants en Spécialités
A partir de cette page vous pouvez :
Retourner au premier écran avec les recherches... |
Détail de l'auteur
Auteur Takeo Yamaguchi
Documents disponibles écrits par cet auteur
Affiner la recherchePrediction of Self-Diffusivity in Multicomponent Polymeric Systems Using Shell-Like Free Volume Theory / Hidenori Ohashi in Industrial & engineering chemistry research, Vol. 49 N° 22 (Novembre 2010)
[article]
in Industrial & engineering chemistry research > Vol. 49 N° 22 (Novembre 2010) . - pp. 11676–11681
Titre : Prediction of Self-Diffusivity in Multicomponent Polymeric Systems Using Shell-Like Free Volume Theory Type de document : texte imprimé Auteurs : Hidenori Ohashi, Auteur ; Taichi Ito, Auteur ; Takeo Yamaguchi, Auteur Année de publication : 2011 Article en page(s) : pp. 11676–11681 Note générale : Chimie industrielle Langues : Anglais (eng) Mots-clés : Multicomponent Polymeric Résumé : Shell-like free volume theory for multicomponent polymeric systems was developed. Molecular-diffusive motion in polymeric systems is due to a large number of microscopic molecular collisions with adjacent molecules. To embody this idea, a shell-like free volume is defined as the free space surrounding the penetrant molecule that emerges from molecular collisions. The common description of molecular collisions allows the shell-like free volume theory to include multicomponent systems. An advantage of the theory is it can estimate molecular self-diffusivity in multicomponent polymeric systems using only pure component parameters of the constituents and no arbitrary parameter or empirical equation. The required parameters can be derived from viscoelastic properties and quantum chemical calculations. Moreover, by comparing experimental and theoretical values, we find that, insofar as no strong interaction is included, this model can fairly predict penetrant self-diffusivities in several multicomponent systems with a wide range of compositions and different types of molecules, even though the model contains no adjustable parameters. DEWEY : 660 ISSN : 0888-5885 En ligne : http://pubs.acs.org/doi/abs/10.1021/ie101299q [article] Prediction of Self-Diffusivity in Multicomponent Polymeric Systems Using Shell-Like Free Volume Theory [texte imprimé] / Hidenori Ohashi, Auteur ; Taichi Ito, Auteur ; Takeo Yamaguchi, Auteur . - 2011 . - pp. 11676–11681.
Chimie industrielle
Langues : Anglais (eng)
in Industrial & engineering chemistry research > Vol. 49 N° 22 (Novembre 2010) . - pp. 11676–11681
Mots-clés : Multicomponent Polymeric Résumé : Shell-like free volume theory for multicomponent polymeric systems was developed. Molecular-diffusive motion in polymeric systems is due to a large number of microscopic molecular collisions with adjacent molecules. To embody this idea, a shell-like free volume is defined as the free space surrounding the penetrant molecule that emerges from molecular collisions. The common description of molecular collisions allows the shell-like free volume theory to include multicomponent systems. An advantage of the theory is it can estimate molecular self-diffusivity in multicomponent polymeric systems using only pure component parameters of the constituents and no arbitrary parameter or empirical equation. The required parameters can be derived from viscoelastic properties and quantum chemical calculations. Moreover, by comparing experimental and theoretical values, we find that, insofar as no strong interaction is included, this model can fairly predict penetrant self-diffusivities in several multicomponent systems with a wide range of compositions and different types of molecules, even though the model contains no adjustable parameters. DEWEY : 660 ISSN : 0888-5885 En ligne : http://pubs.acs.org/doi/abs/10.1021/ie101299q