Functionalized cellulo'/> Citric Acid/Cysteine-Modified Cellulose-Based Materials: Green Preparation and Their Applications in Anticounterfeiting, Chemical Sensing, and UV Shielding
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Citric Acid/Cysteine-Modified Cellulose-Based Materials: Green Preparation and Their Applications in Anticounterfeiting, Chemical Sensing, and UV Shielding

机译:柠檬酸/半胱氨酸改性纤维素的材料:绿色制剂及其在抗抵抗,化学传感和紫外线屏蔽中的应用

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src="http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/ascecg/2017/ascecg.2017.5.issue-12/acssuschemeng.7b02473/20171128/images/medium/sc-2017-024734_0007.gif">Functionalized cellulose-based materials are in high demand for many applications. In this work, we report a green approach to fabricate a type of versatile cellulose-based material through facile citric acid/cysteine treatment. For its preparation, cellulose-based materials were conjugated with citric acid/cysteine-based fluorophores (CCFs) by simply soaking them in a concentrated citric acid/cysteine aqueous solution followed by drying above 80 °C. Chemical modification occurred, which was completed in the swollen state of the cellulose, and the highest conjugating ratio reached 1.6 wt %. It was noted that the treatment had no effect on the crystallinity of the cellulose while the structural morphology of various cellulose-based components in the material was maintained. We also found that the CCF-modified cellulose-based products had remarkable fluorescence, a selective quenching ability toward chloride ions, and excellent UV absorption capacity. Thus, they could have new applications in anticounterfeiting, chemical sensing, and UV shielding. Furthermore, our developed route to fabricate these CCF-modified cellulose-based products was environmentally friendly since water was the only solvent, and no organic solvent was involved throughout the procedures.
机译:src =“http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/ascecg/2017/ socececg.2017.5.issue-12/acssuschemeng.7b02473/20171128/images/medium/sc -2017-024734_0007.gif“>官能化的基于纤维素的材料对许多应用有很高的需求。在这项工作中,我们通过容易柠檬酸/半胱氨酸处理报告了一种制造一种多功能纤维素基材料的绿色方法。为了其制备,通过简单地将其浸泡在浓柠檬酸/半胱氨酸水溶液中,然后在80℃以上干燥,将基于纤维素的材料与柠檬酸/半胱氨酸基荧光团(CCF)缀合。发生化学修饰,其在纤维素的溶胀状态下完成,最高的缀合比达到1.6wt%。注意到,该处理对纤维素的结晶度没有影响,同时维持各种基于纤维素的组分的结构形态。我们还发现CCF改性的基于纤维素的产物具有显着的荧光,选择性淬火能力偏向氯离子,以及优异的UV吸收能力。因此,它们可以在抗抵抗,化学传感和紫外线屏蔽中具有新的应用。此外,我们的制造途径用于制造这些CCF改性的纤维素的产品是环保的,因为水是唯一的溶剂,并且在整个程序中没有涉及有机溶剂。

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  • 作者单位

    Department of Biomedical Engineering The Chinese University of Hong Kong Shatin New Territories 999077 Hong Kong P. R. China;

    Department of Physics The Chinese University of Hong Kong Shatin New Territories 999077 Hong Kong P. R. China;

    Department of Biomedical Engineering The Chinese University of Hong Kong Shatin New Territories 999077 Hong Kong P. R. China;

    Department of Biomedical Engineering The Chinese University of Hong Kong Shatin New Territories 999077 Hong Kong P. R. China;

    Department of Biomedical Engineering The Chinese University of Hong Kong Shatin New Territories 999077 Hong Kong P. R. China;

    Shun Hing Institute of Advanced Engineering The Chinese University of Hong Kong Shatin New Territories 999077 Hong Kong P. R. China;

    Department of Biomedical Engineering The Chinese University of Hong Kong Shatin New Territories 999077 Hong Kong P. R. China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    Anticounterfeiting; Cellulose; Chloride sensing; Citric acid; Cysteine; UV shielding;

    机译:抗灌木;纤维素;氯化物传感;柠檬酸;半胱氨酸;紫外线屏蔽;

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