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Thermo-Reversible Cellulose Micro Phase-Separation in Mixtures of Methyltributylphosphonium Acetate and γ-Valerolactone or DMSO.
Holding, Ashley J; Xia, Jingwen; Hummel, Michael; Zwiers, Harry; Leskinen, Matti; Rico Del Cerro, Daniel; Hietala, Sami; Nieger, Martin; Kemell, Marianna; Helminen, Jussi K J; Aseyev, Vladimir; Tenhu, Heikki; Kilpeläinen, Ilkka; King, Alistair W T.
Afiliação
  • Holding AJ; Department of Chemistry, University of Helsinki, A.I. Virtasen aukio 1, 00560, Helsinki, Finland.
  • Xia J; Circuvate, Walderdorffstr. 4, 65604, Elz, Germany.
  • Hummel M; Department of Chemistry, University of Helsinki, A.I. Virtasen aukio 1, 00560, Helsinki, Finland.
  • Zwiers H; Department of Bioproducts and Biosystems, Aalto University, P.O. Box 11000, 00076, Aalto, Finland.
  • Leskinen M; Department of Chemistry, University of Helsinki, A.I. Virtasen aukio 1, 00560, Helsinki, Finland.
  • Rico Del Cerro D; Department of Chemistry, University of Helsinki, A.I. Virtasen aukio 1, 00560, Helsinki, Finland.
  • Hietala S; Department of Chemistry, University of Helsinki, A.I. Virtasen aukio 1, 00560, Helsinki, Finland.
  • Nieger M; Department of Chemistry, University of Helsinki, A.I. Virtasen aukio 1, 00560, Helsinki, Finland.
  • Kemell M; Department of Chemistry, University of Helsinki, A.I. Virtasen aukio 1, 00560, Helsinki, Finland.
  • Helminen JKJ; Department of Chemistry, University of Helsinki, A.I. Virtasen aukio 1, 00560, Helsinki, Finland.
  • Aseyev V; Department of Chemistry, University of Helsinki, A.I. Virtasen aukio 1, 00560, Helsinki, Finland.
  • Tenhu H; Department of Chemistry, University of Helsinki, A.I. Virtasen aukio 1, 00560, Helsinki, Finland.
  • Kilpeläinen I; Department of Chemistry, University of Helsinki, A.I. Virtasen aukio 1, 00560, Helsinki, Finland.
  • King AWT; Department of Chemistry, University of Helsinki, A.I. Virtasen aukio 1, 00560, Helsinki, Finland.
Chemphyschem ; 23(7): e202100635, 2022 04 05.
Article em En | MEDLINE | ID: mdl-35130371
We have identified cellulose solvents, comprised of binary mixtures of molecular solvents and ionic liquids that rapidly dissolve cellulose to high concentration and show upper-critical solution temperature (UCST)-like thermodynamic behaviour - upon cooling and micro phase-separation to roughly spherical microparticle particle-gel mixtures. This is a result of an entropy-dominant process, controllable by changing temperature, with an overall exothermic regeneration step. However, the initial dissolution of cellulose in this system, from the majority cellulose I allomorph upon increasing temperature, is also exothermic. The mixtures essentially act as 'thermo-switchable' gels. Upon initial dissolution and cooling, micro-scaled spherical particles are formed, the formation onset and size of which are dependent on the presence of traces of water. Wide-angle X-ray scattering (WAXS) and 13 C cross-polarisation magic-angle spinning (CP-MAS) NMR spectroscopy have identified that the cellulose micro phase-separates with no remaining cellulose I allomorph and eventually forms a proportion of the cellulose II allomorph after water washing and drying. The rheological properties of these solutions demonstrate the possibility of a new type of cellulose processing, whereby morphology can be influenced by changing temperature.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Celulose / Líquidos Iônicos Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Celulose / Líquidos Iônicos Idioma: En Ano de publicação: 2022 Tipo de documento: Article