The Experts below are selected from a list of 189510 Experts worldwide ranked by ideXlab platform

Lina Zhang - One of the best experts on this subject based on the ideXlab platform.

  • rapid dissolution of cellulose in lioh urea and naoh urea Aqueous Solutions
    Macromolecular Bioscience, 2005
    Co-Authors: Jie Cai, Lina Zhang
    Abstract:

    Rapid dissolution of cellulose in LiOH/urea and NaOH/urea Aqueous Solutions was studied systematically. The dissolution behavior and solubility of cellulose were evaluated by using (13)C NMR, optical microscopy, wide-angle X-ray diffraction (WAXD), FT-IR spectroscopy, DSC, and viscometry. The experiment results revealed that cellulose having viscosity-average molecular weight ((overline) M eta) of 11.4 x 104 and 37.2 x 104 could be dissolved, respectively, in 7% NaOH/12% urea and 4.2% LiOH/12% urea Aqueous Solutions pre-cooled to -10 degrees C within 2 min, whereas all of them could not be dissolved in KOH/urea Aqueous solution. The dissolution power of the solvent systems was in the order of LiOH/urea > NaOH/urea >> KOH/urea Aqueous solution. The results from DSC and (13)C NMR indicated that LiOH/urea and NaOH/urea Aqueous Solutions as non-derivatizing solvents broke the intra- and inter-molecular hydrogen bonding of cellulose and prevented the approach toward each other of the cellulose molecules, leading to the good dispersion of cellulose to form an actual solution.

  • rapid dissolution of cellulose in lioh urea and naoh urea Aqueous Solutions
    Macromolecular Bioscience, 2005
    Co-Authors: Jie Cai, Lina Zhang
    Abstract:

    Summary: Rapid dissolution of cellulose in LiOH/urea and NaOH/urea Aqueous Solutions was studied systematically. The dissolution behavior and solubility of cellulose were evaluated by using 13C NMR, optical microscopy, wide-angle X-ray diffraction (WAXD), FT-IR spectroscopy, DSC, and viscometry. The experiment results revealed that cellulose having viscosity-average molecular weight () of 11.4 × 104 and 37.2 × 104 could be dissolved, respectively, in 7% NaOH/12% urea and 4.2% LiOH/12% urea Aqueous Solutions pre-cooled to −10 °C within 2 min, whereas all of them could not be dissolved in KOH/urea Aqueous solution. The dissolution power of the solvent systems was in the order of LiOH/urea > NaOH/urea ≫ KOH/urea Aqueous solution. The results from DSC and 13C NMR indicated that LiOH/urea and NaOH/urea Aqueous Solutions as non-derivatizing solvents broke the intra- and inter-molecular hydrogen bonding of cellulose and prevented the approach toward each other of the cellulose molecules, leading to the good dispersion of cellulose to form an actual solution. 13C NMR chemical shifts of carbonyl carbon for urea in LiOH (a) and NaOH (b) of the cellulose Solutions.

Byonghun Jeon - One of the best experts on this subject based on the ideXlab platform.

Jie Cai - One of the best experts on this subject based on the ideXlab platform.

  • rapid dissolution of cellulose in lioh urea and naoh urea Aqueous Solutions
    Macromolecular Bioscience, 2005
    Co-Authors: Jie Cai, Lina Zhang
    Abstract:

    Rapid dissolution of cellulose in LiOH/urea and NaOH/urea Aqueous Solutions was studied systematically. The dissolution behavior and solubility of cellulose were evaluated by using (13)C NMR, optical microscopy, wide-angle X-ray diffraction (WAXD), FT-IR spectroscopy, DSC, and viscometry. The experiment results revealed that cellulose having viscosity-average molecular weight ((overline) M eta) of 11.4 x 104 and 37.2 x 104 could be dissolved, respectively, in 7% NaOH/12% urea and 4.2% LiOH/12% urea Aqueous Solutions pre-cooled to -10 degrees C within 2 min, whereas all of them could not be dissolved in KOH/urea Aqueous solution. The dissolution power of the solvent systems was in the order of LiOH/urea > NaOH/urea >> KOH/urea Aqueous solution. The results from DSC and (13)C NMR indicated that LiOH/urea and NaOH/urea Aqueous Solutions as non-derivatizing solvents broke the intra- and inter-molecular hydrogen bonding of cellulose and prevented the approach toward each other of the cellulose molecules, leading to the good dispersion of cellulose to form an actual solution.

  • rapid dissolution of cellulose in lioh urea and naoh urea Aqueous Solutions
    Macromolecular Bioscience, 2005
    Co-Authors: Jie Cai, Lina Zhang
    Abstract:

    Summary: Rapid dissolution of cellulose in LiOH/urea and NaOH/urea Aqueous Solutions was studied systematically. The dissolution behavior and solubility of cellulose were evaluated by using 13C NMR, optical microscopy, wide-angle X-ray diffraction (WAXD), FT-IR spectroscopy, DSC, and viscometry. The experiment results revealed that cellulose having viscosity-average molecular weight () of 11.4 × 104 and 37.2 × 104 could be dissolved, respectively, in 7% NaOH/12% urea and 4.2% LiOH/12% urea Aqueous Solutions pre-cooled to −10 °C within 2 min, whereas all of them could not be dissolved in KOH/urea Aqueous solution. The dissolution power of the solvent systems was in the order of LiOH/urea > NaOH/urea ≫ KOH/urea Aqueous solution. The results from DSC and 13C NMR indicated that LiOH/urea and NaOH/urea Aqueous Solutions as non-derivatizing solvents broke the intra- and inter-molecular hydrogen bonding of cellulose and prevented the approach toward each other of the cellulose molecules, leading to the good dispersion of cellulose to form an actual solution. 13C NMR chemical shifts of carbonyl carbon for urea in LiOH (a) and NaOH (b) of the cellulose Solutions.

Eva Kumar - One of the best experts on this subject based on the ideXlab platform.

Amit Bhatnagar - One of the best experts on this subject based on the ideXlab platform.