4.8 Article

Anion Bridging-Induced Structural Transformation of Cellulose Dissolved in Ionic Liquid

Journal

JOURNAL OF PHYSICAL CHEMISTRY LETTERS
Volume 7, Issue 24, Pages 5156-5161

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.jpclett.6b02504

Keywords

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Funding

  1. Advanced Low Carbon Technology Research and Development Program (ALCA) [2100040]
  2. Cross-ministerial Strategic Innovation Promotion Program (SIP)
  3. Center of Innovation Program Construction of next-generation infrastructure using innovative materials: Realization of safe and secure society that can coexist with the Earth for centuries from the Japan Science and Technology Agency
  4. JSPS KAKENHI Grant [15H04193]
  5. Grants-in-Aid for Scientific Research [15H04193] Funding Source: KAKEN

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We performed structural investigations of cellulose mixed with 1-ethyl-3methylimidazolium acetate ([Emim][OAcp in the entire concentration range (0-100 mol %) by wide-angle X-ray scattering with the aid of quantum chemical calculations and C-13 solid-state NMR spectroscopy. We particularly focused on a highly concentrated region (>= 30 mol %), which has previously been overlooked. At concentrations of 15-30 mol %, a periodic peak corresponding to cellulose chain alignment emerged; this is associated with a lyotropic cholesteric liquid-crystalline phase. At concentrations of >= 30 mol %, the structure is transformed into ordered layers where OAc anions and Emim cations intercalate. This transformation is found to be driven by a change in the interaction between the IL anions and the OH groups of cellulose. At low concentrations, the anion mainly interacts with the OH group of cellulose in a 1:1 ratio, as previously reported; at high concentrations, the anions bridge the OH groups of two cellulose chains.

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