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Water-induced crystallization and nano-scale spinodal decomposition of cellulose in NMMO and ionic liquid dope

机译:NMMO和离子液体掺杂中纤维素纤维素的水诱导的结晶和纳米晶状体分解

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We followed the cellulose structure formation induced by water diffusion into Lyocell dopes based on both N-Methylmorpholine N-oxide (NMMO) and 1,5-diazabicyclo[4.3.0]non-5-ene acetate ([DBNH][OAc], by using scanning simultaneous small- and wide-angle scattering (SAXS-WAXS) experiment along the diffusion gradient. The water content at each point was estimated from the wide-angle scattering profile, giving a binary diffusion constant of the order of 5 x 10(-10) m(2)/sec. In the case of the cellulose solution in NMMO monohydrate, diffraction peaks corresponding to cellulose II appeared concomitantly with the increase in small angle scattering features indicative of nanofibril formation. In the cellulose solution in the ionic liquid, an increase in small angle scattering intensity with the progression of water content appeared at scattering vector q=0.015 angstrom(-1) corresponding to a correlation length of about 40 nm, indicative of nanometric spinodal decomposition preceding the coagulation process, though no crystalline peak appeared in the wide-angle scattering.
机译:我们跟随水分扩散诱导的纤维素结构形成为基于N-甲基丙酮N-氧化物(NMMO)和1,5-二氮杂环[4.3.0]非5-乙酸乙酯([DBNH] [OAC],通过沿扩散梯度使用扫描同时小小的和广角散射(SAXS-WAXS)实验。从广角散射轮廓估计每个点的水含量,给出5×10的二进制扩散常数(-10)M(2)/秒。在NMMO一水合物中的纤维素溶液的情况下,对应于纤维素II的衍射峰随着指示纳米纤维形成的小角度散射特征的增加而伴随着。在离子中的纤维素溶液中液体,具有含水量的进展的小角度散射强度的增加出现在散射载体Q = 0.015埃(-1)对应于约40nm的相关长度,表示在凝固前面的纳米旋转型分解处理过程,尽管在广角散射中没有出现结晶峰。

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