Understanding the role of co-solvents in the dissolution of cellulose in ionic liquids

被引:238
作者
Andanson, Jean-Michel [1 ,2 ]
Bordes, Emilie [1 ,2 ]
Devemy, Julien [1 ,2 ]
Leroux, Fabrice [1 ,2 ]
Padua, Agilio A. H. [1 ,2 ]
Gomes, Margarida F. Costa [1 ,2 ]
机构
[1] Univ Blaise Pascal, Univ Clermont Ferrand 2, Inst Chim Clermont Ferrand, F-63000 Clermont Ferrand, France
[2] CNRS, UMR 6296, ICCF, F-63171 Aubiere, France
关键词
ATOM FORCE-FIELD; MOLECULAR-DYNAMICS; RHEOLOGICAL PROPERTIES; VISCOSITY; ACETATE; POLYSACCHARIDES; SOLUBILITY; MIXTURES; SOLVENTS;
D O I
10.1039/c3gc42244e
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The dissolution of microcrystalline cellulose in 1-butyl-3-methylimidazolium acetate [C(4)C(1)Im][OAc] was studied using a solid-liquid equilibrium method based on polarized-light optical microscopy from 30 to 100 degrees C. We found that [C(4)C(1)Im][OAc] could dissolve as much as 25 wt% of cellulose at temperatures below 100 degrees C. The structure of the composite phase obtained after cooling a solution of 16 wt% of cellulose in [C(4)C(1)Im][OAc] was analyzed by low angle X-ray diffraction showing the absence of microcrystalline cellulose, but depicting an extensive long range isotropic ordering. With the aim of improving the dissolution of cellulose in the ionic liquid, dimethyl sulfoxide, DMSO, was added as a co-solvent. It was observed that it enhances the solvent power of the ionic liquid by decreasing the time needed for dissolution, even at low temperatures. In order to understand what makes DMSO a good co-solvent, two approaches were followed. Firstly, we studied experimentally the mass transport properties (viscosity and ionic conductivity) of [C(4)C(1)Im][OAc] + DMSO mixtures at different compositions and, secondly, we assessed the molecular structure and interactions around glucose, the structural unit of cellulose, by means of molecular dynamics simulations. As expected, DMSO dramatically decreases the viscosity and increases the conductivity of the mixtures, but without inducing cation-anion dissociation in the ionic liquid. These results were confirmed by molecular simulation as it was found that the presence of a 0.5 mole fraction concentration of DMSO does not significantly affect the hydrogen-bond network in the ionic liquid. Furthermore, molecular dynamics shows that in the [C(4)C(1)Im][OAc] + DMSO equimolar mixture, DMSO does not interact specifically with glucose. We conclude that DMSO improves the solvation capabilities of the ionic liquid because it facilitates mass transport by decreasing the solvent viscosity without significantly affecting the specific interactions between cations and anions or between the ionic liquid and the polymer. The behavior of DMSO as a co-solvent was compared with that of water and it was found that water molecules are more probably found near glucose than those of DMSO, thus interfering with ionic liquid-glucose interactions, which might explain the unsuitability of water as a co-solvent for cellulose in ionic liquids.
引用
收藏
页码:2528 / 2538
页数:11
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