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Assembly of cellulose nanocrystals in a levitating drop probed by time-resolved small angle X-ray scattering

机译:组装的纤维素纳米晶体悬浮下降时间分辨小角度x射线探测散射

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摘要

Assembly of bio-based nano-sized particles into complex architectures and morphologies is an area of fundamental interest and technical importance. We have investigated the assembly of sulfonated cellulose nanocrystals (CNC) dispersed in a shrinking levitating aqueous drop using time-resolved small angle X-ray scattering (SAXS). Analysis of the scaling of the particle separation distance (d) with particle concentration (c) was used to follow the transition of CNC dispersions from an isotropic state at 1-2 vol% to a compressed nematic state at particle concentrations above 30 vol%. Comparison with SAXS measurements on CNC dispersions at near equilibrium conditions shows that evaporation-induced assembly of CNC in large levitating drops is comparable to bulk systems. Colloidal states with d vs. c scalings intermediate between isotropic dispersions and unidirectional compression of the nematic structure could be related to the biphasic region and gelation of CNC. Nanoscale structural information of CNC assembly up to very high particle concentrations can help to fabricate nanocellulose-based materials by evaporative methods.
机译:生物纳米粒子的组装复杂的结构和形态是一个区域的根本利益和技术的重要性。我们已经调查了磺化的组装纤维素纳米晶体(CNC)分散在一个减少悬浮水使用时间分辨的x射线小角散射分析(粉煤灰)。距离(d)与粒子分离浓度(c)被用来跟踪过渡的CNC分散体的各向同性状态1 - 2卷%到压缩向列状态在粒子浓度超过30卷%。与粉煤灰对数控测量分散在接近平衡条件数控大型evaporation-induced组装悬浮液滴与大部分系统。胶体州d和c落下的石块各向同性之间的中间分散体向列的单向压缩结构可能与两相的地区和数控凝胶。信息的数控装配非常高粒子浓度可以制造nanocellulose-based材料蒸发方法。

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