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Thermodynamic effect on interaction between crystalline phases in size-controlled ACC-bacterial nanocellulose and poly(vinyl alcohol)

机译:尺寸控制的ACC-细菌纳米纤维素和聚(乙烯醇)结晶相之间晶相的相互作用的热力学作用

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The aqueous counter collision (ACC) method can provide single bacterial nanocellulose ribbons (ACC-BNC) in a desired width, from a pellicle produced by Gluconacetobacter xylinus. Kose et al. (Biomacromolecules, 12:716-720, 2011) reported that the ACC process transformed the major I-alpha crystalline phase of the native fiber to a stable I-beta phase, without decreasing the overall crystallinity. The current study investigated the variation of the crystalline phases of ACC-BNC, upon interaction with poly(vinyl alcohol) (PVA). ACC-BNC of desired width was mixed with PVA, without any chemical reaction occurring. This resulted in a homogeneous suspension. The equilibrium melting point of PVA in cast nanocomposite films was investigated, as a probe for evaluating the crystalline surface properties of the ACC-BNC. A decrease in the equilibrium melting point of PVA would have indicated attractive interactions between the PVA and ACC-BNC. However, the nature of the ACC-BNC surface in the presence of PVA depended on the ACC-BNC width. Thicker ACC-BNC acted as a nucleating agent for PVA. Thinner ACC-BNC acted as a diluent of PVA. This tendency was opposite to the case for I-beta-dominant ACC-wood nanocellulose. ACC-BNC acting as a nucleating agent was more efficient than ACC-wood nanocellulose. The results suggested that ACC-BNC surfaces, which probably contained I (alpha) phases, had different characteristics to those of I-beta-dominant ACC-wood nanocellulose surfaces.
机译:水性反碰撞(ACC)方法可以从通过葡聚糖叶杆菌生产的薄膜产生所需宽度的单细菌纳米纤维素带(ACC-BNC)。 Kose等人。 (BioMacromoLecules,12:716-720,2011)报道了Acc工艺将天然纤维的主要I-α结晶相转化为稳定的I-β相,而不降低整体结晶度。目前的研究研究了与聚(乙烯醇)(PVA)相互作用时ACC-BNC的晶相的变化。所需宽度的Acc-BNC与PVA混合,没有发生任何化学反应。这导致均匀的悬浮液。研究了PVA在铸造纳米复合膜中的平衡熔点,作为评价ACC-BNC的结晶表面性质的探针。 PVA平衡熔点的降低显示PVA和ACC-BNC之间的吸引相互作用。然而,ACC-BNC表面在PVA存在下的性质依赖于ACC-BNC宽度。厚的ACC-BNC用作PVA的成核剂。稀释剂ACC-BNC充当PVA的稀释剂。这种趋势与I-β-占优势ACC木纳米纤维素的情况相反。 ACC-BNC作为成核剂的作用比Acc-Wood纳米纤维更有效。结果表明,可能含有I(α)阶段的ACC-BNC表面对I-Beta-显性的Acc-Wood纳米纤维表面具有不同的特征。

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