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New organic-inorganic hybrid composites based on cellulose nanofibers and modified Laponite

机译:基于纤维素纳米纤维的新型有机 - 无机杂化复合材料和改性丙酮

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摘要

The combination of cellulosic materials and clays, such as Laponite, can provide composites with superior optical and mechanical properties compared to pristine cellulose. Synthetic clays can also be used as a host matrix for the immobilization of luminescent complexes, as the incorporated complexes may present enhanced emission quantum efficiency, photo and thermostability compared to the non-immobilized ones. In this way, we, herein, report the preparation of luminescent composites through the incorporation of a Eu(III) complex [Eu3+(tta)n] containing Laponite (Lap) into cellulose nanofibers (CNF). The thermogravimetry results show that the obtained CNF/Lap@[Eu3+(tta)n] films present higher thermal resistance than the CNF film. The Eu3+(tta)n species were found in the composite structure with preserved luminescence characteristics, and no leaching or degradation of the organic ligand was observed with the preparation of the composites.
机译:与原始纤维素相比,纤维素材料和粘土等纤维素材料和粘土的组合可以提供具有优异光学和机械性能的复合材料。 合成粘土也可用作固定发光复合物的宿主基质,因为与非固定化的复合物可以提高增强的发射量子效率,照片和热稳定性。 以这种方式,我们在此报告通过将含有丙酮(LAP)的EU(III)复合物[EU3 +(TTA)N]掺入纤维素纳米纤维(CNF)中的EU(III)复合物[EU3 +(TTA)N]的制备。 热重试验结果表明,所获得的CNF / LAP @ [EU3 +(TTA)N]薄膜的热阻高于CNF膜。 在具有保存的发光特性的复合结构中发现EU3 +(TTA)N物种,并且通过制备复合材料,没有观察到有机配体的浸出或降解。

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