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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Effects of crosslinking ratio and aging time on properties of physical and chemical cellulose gels via 1-butyl-3-methylimidazolium chloride solvent
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Effects of crosslinking ratio and aging time on properties of physical and chemical cellulose gels via 1-butyl-3-methylimidazolium chloride solvent

机译:1-丁基-3-甲基咪唑鎓氯化物溶剂对交联比和老化时间对理化纤维素凝胶性能的影响

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摘要

Papers used in the field of electro-responsive applications are known as Electroactive-papers (EAPaps), consisting primarily of a cellulose. 1-Butyl-3-methylimi-dazolium chloride is an interesting ionic liquid that acts as an effective cellulose solvent for EAPaps due to its high solubility without chain derivatization, less chain degradation, and stability in electro-responsive applications. In our work, physical and chemical cellulose gels were fabricated and studied for the effects of various crosslinking ratios (CR) and aging time (t_(ag)), with glutaraldehyde acting as the crosslinking agent. The crosslinking reaction conversion could be increased by increasing the CR and t_(ag); the reaction products were ketone linkages and by-product water molecules. A difference in optical properties could be observed and related to the differing amounts of ketone linkages, as confirmed by FTIR-ATR quantitative analysis. UV-visible spectra showed that the prepared samples had a maximum wavelength λ_(max) nm, a characteristic of ketone linkages. By-product water molecules exhibited plasticiz-ing effects, as observed by the decrease in the storage moduli (G') at 1 day aging time. The outward migration of by-product water molecules caused a slight increase in G' at 15 days aging time due to a closer packing. The byproduct water molecules induced the H~+-hopping and more disordered domains resulting in an ease in ion migration. Our paper-gels showed potential characteristics towards electro-responsive applications: less preparation time (<14 h) and stable gel properties.
机译:在电响应应用领域中使用的纸被称为电活性纸(EAPaps),主要由纤维素组成。 1-丁基-3-甲基亚甲基-重氮酰氯是一种有趣的离子液体,由于其高溶解度而不会发生链衍生,链降解较少以及在电响应应用中具有稳定性,因此可作为EAPaps的有效纤维素溶剂。在我们的工作中,以戊二醛为交联剂,制备并研究了物理和化学纤维素凝胶对各种交联比(CR)和老化时间(t_(ag))的影响。可以通过增加CR和t_(ag)来提高交联反应的转化率;反应产物为酮键和副产物水分子。如FTIR-ATR定量分析所证实,可以观察到光学性质的差异,并与酮键的不同数量有关。紫外可见光谱表明,所制备的样品具有最大波长λ_(max)nm,为酮键的特征。副产物水分子表现出增塑作用,如通过老化1天时的储能模量(G')降低所观察到的。由于紧密堆积,在15天的老化时间,副产物水分子的向外迁移导致G'的轻微增加。副产物水分子引起H +跃迁和更多的无序域,导致离子迁移容易。我们的纸凝胶对电响应应用显示出潜在的特性:更少的制备时间(<14小时)和稳定的凝胶性能。

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