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首页> 外文期刊>Gels >New Insights on the Role of Urea on the Dissolution and Thermally-Induced Gelation of Cellulose in Aqueous Alkali
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New Insights on the Role of Urea on the Dissolution and Thermally-Induced Gelation of Cellulose in Aqueous Alkali

机译:尿素对碱水溶液中纤维素的溶解和热诱导胶凝作用的新见解

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摘要

The gelation of cellulose in alkali solutions is quite relevant, but still a poorly understood process. Moreover, the role of certain additives, such as urea, is not consensual among the community. Therefore, in this work, an unusual set of characterization methods for cellulose solutions, such as cryo-transmission electronic microscopy (cryo-TEM), polarization transfer solid-state nuclear magnetic resonance (PTssNMR) and diffusion wave spectroscopy (DWS) were employed to study the role of urea on the dissolution and gelation processes of cellulose in aqueous alkali. Cryo-TEM reveals that the addition of urea generally reduces the presence of undissolved cellulose fibrils in solution. These results are consistent with PTssNMR data, which show the reduction and in some cases the absence of crystalline portions of cellulose in solution, suggesting a pronounced positive effect of the urea on the dissolution efficiency of cellulose. Both conventional mechanical macrorheology and microrheology (DWS) indicate a significant delay of gelation induced by urea, being absent until ca. 60 °C for a system containing 5 wt % cellulose, while a system without urea gels at a lower temperature. For higher cellulose concentrations, the samples containing urea form gels even at room temperature. It is argued that since urea facilitates cellulose dissolution, the high entanglement of the cellulose chains in solution (above the critical concentration, C*) results in a strong three-dimensional network.
机译:纤维素在碱性溶液中的胶凝作用非常重要,但仍然缺乏了解。而且,某些添加剂(例如尿素)的作用在社区之间是无法达成共识的。因此,在这项工作中,采用了一组不寻常的纤维素溶液表征方法,例如低温透射电子显微镜(cryo-TEM),极化转移固态核磁共振(PTssNMR)和扩散波谱(DWS)。研究了尿素在纤维素在碱水溶液中的溶解和胶凝过程中的作用。 Cryo-TEM显示,添加尿素通常会减少溶液中未溶解的纤维素原纤维的存在。这些结果与PTssNMR数据一致,PTssNMR数据显示出溶液中纤维素的减少,在某些情况下不存在纤维素的结晶部分,表明尿素对纤维素的溶解效率具有明显的积极作用。常规的机械宏观流变学和微观流变学(DWS)均表明尿素引起的胶凝作用显着延迟,直到大约2年前才出现。对于包含5 wt%纤维素的系统,温度为60°C,而在没有尿素凝胶的系统中,温度较低。对于较高的纤维素浓度,即使在室温下,含有尿素的样品也会形成凝胶。据认为,由于尿素促进纤维素的溶解,溶液中纤维素链的高度缠结(高于临界浓度C *)导致形成了牢固的三维网络。

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