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首页> 外文期刊>Biomacromolecules >Phase Behavior of Acetylated Cellulose Nanocrystals and Origins of the Cross-Hatch Birefringent Texture
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Phase Behavior of Acetylated Cellulose Nanocrystals and Origins of the Cross-Hatch Birefringent Texture

机译:乙酰化纤维素纳米晶体的相位行为及交叉舱口双折射纹理的起源

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Cellulose nanocrystals hydrolyzed by hydro-acid and esterified by acetic acid produce acetylated cellulose nanocrystals (CNC-AA) with acetyl ester surface functional groups. While much attention has been paid to understanding the phase behavior (liquid crystal) of aqueous dispersions of sulfonated nanocrystals, relatively few studies have focused on CNC-AA dispersions. CNC-AA dispersions exhibit multiple phase regimes and markedly different phase behavior due to their lower surface charge. At concentrations above 5.0 X 10(-4)%vol, a decrease in the apparent diffusion coefficient indicates the onset of interparticle interactions and a transition from the dilute regime. From 0.003 to 0.31%vol, biphasic behavior is observed, consisting of a birefringent lower phase and disordered or isotropic upper phase. Small-angle neutron scattering was used to measure the growth of fractal structures with increasing concentration and indicates a two-dimensional assembly with short-range order in a plate-like assembled geometry. Above 0.31%vol, the dispersion transitions exhibit a cross-hatch birefringent texture, which is believed to exist as a fine-scale nematic that possesses frozen-in flow shear behavior, consistent with a glassy phase. This cross-hatch pattern is maintained in dried films, where atomic force microscopy and scanning electron microscopy reveal a layered sheet-like structure. Imaging also indicates that the basic unit of CNC-AA microstructure in the film consists of 0.5-1.5 mu m scale aligned nanorod domains, which agrees with neutron scattering and the dimensions of each individual "hatch" in the birefringent texture observed by cross-polarized microscopy. The assembly of the nanorods into this layered structure and the fine-scale nematic birefringent cross-hatch texture is of significant fundamental interest, particularly since it differs greatly from cellulose nanocrystals with other surface chemistry and offers potential opportunities in other applications owing to the unique assembly.
机译:用氢酸水解的纤维素纳米晶体,并通过乙酸酯化,用乙酰酯表面官能团产生乙酰化纤维素纳米晶(CNC-AA)。虽然已经注意到了解磺化纳米晶的水分散体的相行为(液晶),但相对较少的研究集中于CNC-AA分散体。 CNC-AA分散体表现出多个相位制度,并且由于其较低的表面电荷而显着不同的相位行为。在5.0×10(-4)%Vol以上的浓度下,表观扩散系数的降低表明颗粒间相互作用的发作和从稀释制度的过渡。从0.003〜0.31%的体积,观察到双射线行为,由双折射低相和无序或各向同性的上阶段组成。使用小角度散射来测量分形结构的生长,随着浓度的增加,并表示在板状组装几何形状中具有短距离顺序的二维组件。在0.31%Vol以上,分散转变表现出交叉舱口双折射纹理,其被认为存在为具有冰冻的流动剪切行为的细微向列,其具有玻璃相一致。该交叉阴影图案保持在干燥的薄膜中,其中原子力显微镜和扫描电子显微镜显示层状片状结构。成像还表明,膜中的CNC-AA微观结构的基本单元由0.5-1.5μm的比对纳米棒结构域组成,该纳米棒结构域与中子散射和通过交叉偏振观察到的双折射纹理中的每个单独的“舱口”的尺寸。显微镜。将纳米棒的组装成该层状结构和微级列目二射交叉舱口纹理具有重要的基本兴趣,特别是因为它与其他表面化学的纤维素纳米晶体不同,因此由于独特的组装而在其他应用中提供潜在的机会。

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