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THE APPARENT STRUCTURAL HYDROPHOBICITY OF CELLULOSE NANOCRYSTALS

机译:纤维素纳米晶体的表观结构疏水性

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The Teas graph of wood-based sulfuric acid-hydrolyzed cellulose nanocrystals(CNCs)was plotted based on sedimentation tests in a set of 25 common solvents.Comparisons with those of sucrose and dextran,taken as equivalents for cellobiose(cellulose’s monomer)and amorphous cellulose,respectively,highlighted the amphiphilic nature of CNCs.In the absence of any chemical arguments,the hydrophobic behavior displayed is thought to be caused by the exposition of(200)lattice planes at the CNC surface.This apparent structural hydrophobicity may be exploited to achieve the dispersion of CNCs in some mildly-non polar matrices such as poly(ethylene glycol)and poly(lactic acid).The Teas graph is a useful tool to predict the dispersibility potential of CNCs and to select a proper solvent for nanocomposite preparation
机译:基于一组25种常见的溶剂中的沉降试验,绘制基于木硫酸水解纤维素纳米晶体(CNC)的茶叶图。与蔗糖和葡聚糖的沉降试验,作为纤维二糖(纤维素的单体)和无定形纤维素的等同物分别突出显示CNCS的两亲性质。在没有任何化学争论的情况下,显示所显示的疏水行为被认为是由CNC表面的阐述(200)晶片平面的阐述引起的。这可能被利用来实现这一表观结构疏水性CNCs在一些轻度 - 非极性基质中的分散如​​聚(乙二醇)和聚(乳酸)。茶叶图是预测CNCS的分散电位并选择适当溶剂的纳米复合材料制剂的有用工具

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