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A Highly Efficient and Durable Fluorescent Paper Produced from Bacterial Cellulose/Eu Complex and Cellulosic Fibers

机译:由细菌纤维素/ Eu复合物和纤维素纤维生产的高效耐用的荧光纸

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摘要

The general method of producing fluorescent paper by coating fluorescent substances onto paper base faces the problems of low efficiency and poor durability. Bacterial cellulose (BC) with its nanoporous structure can be used to stabilize fluorescent particles. In this study, we used a novel method to produce fluorescent paper by first making Eu/BC complex and then processing the complex and cellulosic fibers into composite paper sheets. For this composting method, BC can form very stable BC/Eu complex due to its nanoporous structure, while the plant-based cellulosic fibers reduce the cost and provide stiffness to the materials. The fluorescent paper demonstrated a great fluorescent property and efficiency. The ultraviolet absorbance or the fluorescent intensity of the Eu-BC fluorescent paper increased with the increase of Eu-BC content but remained little changed after Eu-BC content was higher than 5%. After folding 200 times, the fluorescence intensity of fluorescent paper decreased by only 0.7%, which suggested that the Eu-BC fluorescent paper has great stability and durability.
机译:通过将荧光物质涂覆到纸基上来生产荧光纸的一般方法面临效率低和耐久性差的问题。具有纳米孔结构的细菌纤维素(BC)可用于稳定荧光颗粒。在这项研究中,我们使用一种新颖的方法来生产荧光纸,方法是先将Eu / BC复合物制成,然后将复合物和纤维素纤维加工成复合纸。对于这种堆肥方法,由于其纳米孔结构,BC可以形成非常稳定的BC / Eu复合物,而基于植物的纤维素纤维可以降低成本并为材料提供硬度。荧光纸显示出优异的荧光性质和效率。 Eu-BC荧光纸的紫外线吸收率或荧光强度随Eu-BC含量的增加而增加,但当Eu-BC含量大于5%时,紫外吸收或荧光强度变化不大。折叠200次后,荧光纸的荧光强度仅降低0.7%,这表明Eu-BC荧光纸具有很大的稳定性和耐久性。

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