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Fabrication and Application of SERS-Active Cellulose Fibers Regenerated from Waste Resource

机译:废弃物中再生的SERS-活性纤维素纤维的制备和应用

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摘要

The flexible SERS substrate were prepared base on regenerated cellulose fibers, in which the Au nanoparticles were controllably assembled on fiber through electrostatic interaction. The cellulose fiber was regenerated from waste paper through the dry-jet wet spinning method, an eco-friendly and convenient approach by using ionic liquid. The Au NPs could be controllably distributed on the surface of fiber by adjusting the conditions during the process of assembling. Finite-difference time-domain theoretical simulations verified the intense local electromagnetic fields of plasmonic composites. The flexible SERS fibers show excellent SERS sensitivity and adsorption capability. A typical Raman probe molecule, 4-Mercaptobenzoicacid (4-MBA), was used to verify the SERS cellulose fibers, the sensitivity could achieve to 10−9 M. The flexible SERS fibers were successfully used for identifying dimetridazole (DMZ) from aqueous solution. Furthermore, the flexible SERS fibers were used for detecting DMZ from the surface of fish by simply swabbing process. It is clear that the fabricated plasmonic composite can be applied for the identifying toxins and chemicals.
机译:柔性SERS基板在再生纤维素纤维上制备碱,其中Au纳米颗粒通过静电相互作用可控制地组装在纤维上。通过使用离子液体,通过干式湿纺法从废纸中再生纤维素纤维,通过离子液体进行环保和方便的方法。通过调整组装过程中的条件,可以在光纤表面上可控地分布Au NPS。有限差分时间域理论模拟验证了等离子体复合材料的强烈局部电磁场。柔性SERS纤维显示出优异的SERS敏感性和吸附能力。使用典型的拉曼探针分子,4-巯基苯虫酸(4-MBA)来验证SERS纤维素纤维,敏感性可以达到10-9米。柔性SERS纤维成功地用于鉴定水溶液中的二甲唑(DMZ) 。此外,柔性SERS纤维用于通过简单的擦拭过程从鱼表面检测DMZ。很明显,可以施加制造的等离子体复合材料以鉴定鉴定毒素和化学品。

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