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      KCI등재 SCIE SCOPUS

      Scaling analysis on the linear viscoelasticity of cellulose 1-ethyl-3-methyl imidazolium acetate solutions

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      https://www.riss.kr/link?id=A106331545

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      다국어 초록 (Multilingual Abstract)

      Many researches have studied the viscoelasticity of cellulose/ionic liquid solutions through the conventional scaling rules which assume the monodisperse polymer. However, they are not suitable for cellulose since natural polymers such as cellulose ha...

      Many researches have studied the viscoelasticity of cellulose/ionic liquid solutions through the conventional scaling rules which assume the monodisperse polymer. However, they are not suitable for cellulose since natural polymers such as cellulose have molecular weight distribution. In this paper, dynamic rheological behaviors of 1-ethyl-3-methyl imidazolium acetate solutions dissolving three kinds of celluloses were measured in a large range of concentrations from the dilute regime to the entangled semidilute regime at 25°C. We compared the viscosity-fitting scaling (Chen et al., 2011) and the phenomenological scaling to replace the conventional scaling. Two scaling methods were applied to the linear viscoelasticity of the cellulose solutions with different molecular weights and molecular weight distributions. The results of each scaling were compared by the superposition of master curves obtained from each scaling. The effects of molecular weight distribution were observed by the dependence of the scaling factors on concentration and molecular weight of cellulose.

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      참고문헌 (Reference)

      1 Sescousse, R., "Viscosity of cellulose-imidazolium-based ionic liquid solutions" 114 : 7222-7228, 2010

      2 Morse, D.C., "Viscoelasticity of tightly entangled solutions of semiflexible polymer" 58 : R1237-R1240, 1997

      3 Cho, K.S., "Viscoelasticity of Polymers: Theory and Numerical Algorithms" Springer 2016

      4 Lu, F., "Viscoelasticity and rheology in the regimes from dilute to concentrated in cellulose 1-ethyl-3-methylimidazolium acetate solutions" 20 : 1343-1352, 2013

      5 Watanabe, H., "Viscoelasticity and dynamics of entangled polymers" 24 : 1253-1403, 1999

      6 Fuchs, K., "Viscoelastic properties of narrow-distribution poly(methyl methacrylates)" 29 : 5893-5901, 1996

      7 Regalado E.J., "Viscoelastic behavior of semidilute solutions of multi sticker polymer chains" 32 : 8501-8588, 1999

      8 Colby, R.H., "Structure and linear viscoelasticity of flexible polymer solutions: Comparison of polyelectrolyte and neutral polymer solutions" 49 : 425-442, 2010

      9 Dealy, J.M., "Structure and Rheology of Molten Polymers: From Structure to Flow Behavior and Back Again" Hanser Verlag 2006

      10 Kosan, B., "Solution states of cellulose in selected direct dissolution agents" 17 : 495-506, 2010

      1 Sescousse, R., "Viscosity of cellulose-imidazolium-based ionic liquid solutions" 114 : 7222-7228, 2010

      2 Morse, D.C., "Viscoelasticity of tightly entangled solutions of semiflexible polymer" 58 : R1237-R1240, 1997

      3 Cho, K.S., "Viscoelasticity of Polymers: Theory and Numerical Algorithms" Springer 2016

      4 Lu, F., "Viscoelasticity and rheology in the regimes from dilute to concentrated in cellulose 1-ethyl-3-methylimidazolium acetate solutions" 20 : 1343-1352, 2013

      5 Watanabe, H., "Viscoelasticity and dynamics of entangled polymers" 24 : 1253-1403, 1999

      6 Fuchs, K., "Viscoelastic properties of narrow-distribution poly(methyl methacrylates)" 29 : 5893-5901, 1996

      7 Regalado E.J., "Viscoelastic behavior of semidilute solutions of multi sticker polymer chains" 32 : 8501-8588, 1999

      8 Colby, R.H., "Structure and linear viscoelasticity of flexible polymer solutions: Comparison of polyelectrolyte and neutral polymer solutions" 49 : 425-442, 2010

      9 Dealy, J.M., "Structure and Rheology of Molten Polymers: From Structure to Flow Behavior and Back Again" Hanser Verlag 2006

      10 Kosan, B., "Solution states of cellulose in selected direct dissolution agents" 17 : 495-506, 2010

      11 Chen, X., "Solution rheology of cellulose in 1-butyl-3-methyl imidazolium chloride" 55 : 485-494, 2011

      12 Haward, S.J., "Shear and extensional rheology of celllose/ionic liquid solutions" 13 : 1688-1699, 2012

      13 Chen, X., "Rheology of concentrated cellulose solutions in 1-butyl-3-methylimidazolium chloride" 17 : 273-279, 2009

      14 Collier, J.R., "Rheology of 1-butyl-3-methylimidazolium chloride cellulose solutions. II. Solution character and preparation" 111 : 1019-1027, 2008

      15 Sammons, R.J., "Rheology of 1-butyl-3-methylimidazolium chloride cellulose solutions. I. Shear rheology" 110 : 1175-1181, 2008

      16 Lv, Y., "Rheological properties of cellulose/ionic liquid/dimethylsulfoxide(DMSO)solutions" 53 : 2524-2531, 2012

      17 Gericke, M., "Rheological properties of cellulose/ionic liquid solutions : from dilute to concentrated states" 10 : 1188-1194, 2009

      18 Lu, F., "Rheological characterization of concentrated cellulose solutions in 1-allyl-3-methylimidazolium chloride" 124 : 3419-3425, 2011

      19 Xia, X., "Rheological behaviors of cellulose/[BMIM]Cl solutions varied with the dissolving process" 21 : 512-, 2014

      20 Wang, L., "Rheological behaviors of cellulose in 1-ethyl-3-methylimidazolium chloride/dimethylsulfoxide" 110 : 292-297, 2014

      21 Rubinstein, M., "Polymer Physics" Oxford University Press 2003

      22 Song, H., "Phase transition and rheological behaviors of concentrated cellulose/ionic liquid solutions" 114 : 6006-6013, 2010

      23 Tsenoglou, C., "Molecular weight polydispersity effects on the viscoelasticity of entangled linear polymers" 24 : 1762-1767, 1991

      24 Seddon, K., "Ionic liquids for clean technology" 68 : 351-356, 1996

      25 Lee, Y.J., "Influence of water on phase transition and rheological behavior of cellulose/ionic liquid/water ternary systems" 134 : 44658-, 2016

      26 Malkin, A.Y., "From dynamic modulus via different relaxation spectra to relaxation and creep functions" 40 : 261-271, 2001

      27 조광수, "Effect of temporary network structure on linear and nonlinear viscoelasticity of polymer solutions" 한국유변학회 27 (27): 151-161, 2015

      28 Colby, R.H., "Effect of concentration and thermodynamic interaction on the viscoelastic properties of polymer solutions" 24 : 3873-3882, 1991

      29 Maeda, A., "Dynamic segment size of the cellulose chain in an ionic liquid" 46 : 7118-7124, 2013

      30 Zhu, S., "Dissolution of cellulose with ionic liquids and its application: A mini-review" 8 : 325-327, 2006

      31 Swatloski, R.P., "Dissolution of cellose with ionic liquids" 124 : 4974-4975, 2002

      32 Kosan, B., "Dissolution and forming of cellulose with ionic liquids" 15 : 59-66, 2008

      33 Kuang, Q.L., "Cellulose in an ionic liquid: The rheological properties of the solutions spanning the dilute and semidilute regimes" 112 : 10234-10240, 2008

      34 김상모, "Applications of Monte Carlo method to nonlinear regression of rheological data" 한국유변학회 30 (30): 21-28, 2018

      35 Bae, J.-E., "A systematic approximation of discrete relaxation time spectrum from the continuous spectrum" 235 : 64-75, 2016

      36 Zhang, H., "1-Allyl-3-methylimidazolium chloride room temperature ionic liquid: A new and powerful nonderivatizing solvent for cellulose" 38 : 8272-8277, 2005

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      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
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