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  • 标题:Sustainable Surface Engineering of Lignocellulose and Cellulose by Synergistic Combination of Metal‐Free Catalysis and Polyelectrolyte Complexes
  • 本地全文:下载
  • 作者:Rana Alimohammadzadeh ; Sinke H. Osong ; Abdolrahim A. Rafi
  • 期刊名称:Global Challenges
  • 印刷版ISSN:2056-6646
  • 电子版ISSN:2056-6646
  • 出版年度:2019
  • 卷号:3
  • 期号:7
  • 页码:1-6
  • DOI:10.1002/gch2.201900018
  • 语种:English
  • 出版社:John Wiley & Sons, Ltd
  • 摘要:AbstractA sustainable strategy for synergistic surface engineering of lignocellulose and cellulose fibers derived from wood by synergistic combination of metal‐free catalysis and renewable polyelectrolyte (PE) complexes is disclosed. The strategy allows for improvement and introduction of important properties such as strength, water resistance, and fluorescence to the renewable fibers and cellulosic materials. For example, the “green” surface engineering significantly increases the strength properties (up to 100% inZ‐strength) of chemi‐thermomechanical pulp (CTMP) and bleached sulphite pulp (BSP)‐derived sheets. Next, performing an organocatalytic silylation with a nontoxic organic acid makes the corresponding lignocellulose and cellulose sheets hydrophobic. A selective color modification of polysaccharides is developed by combining metal‐free catalysis and thiol‐ene click chemistry. Next, fluorescent PE complexes based on cationic starch (CS) and carboxymethylcellulose (CMC) are prepared and used for modification of CTMP or BSP in the presence of a metal‐free catalyst. Laser‐scanning confocal microscopy reveals that the PE‐strength additive is evenly distributed on the CTMP and heterogeneously on the BSP. The fluorescent CS distribution on the CTMP follows the lignin distribution of the lignocellulosic fibers.A sustainable strategy for surface engineering of lignocellulose and cellulose fibersderived from wood by synergistic combination of metal‐free catalysis and renewable polyelectrolyte complexes is disclosed. The strategy allows for improvement and introduction of important properties such as strength, water resistance, and fluorescence to the renewable fibers and cellulosic materials.
  • 关键词:click chemistrylignocellulosemetal‐free catalysisselective fluorescent labelingsustainable polyelectrolyte complexsynergistic surface engineeringwater repellent
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