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A Novel Polyaniline Nanofiber Combined with Toluidine Blue as a Sensitive Detection Platform for Lignin by Raman Spectroscopy

机译:一种新型聚苯胺纳米纤维与甲苯胺蓝,作为拉曼光谱法作为木质素的敏感检测平台

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Raman spectroscopy is widely applied in wood science because of its features of being nondestructive, rapidity, and high resolution. However, Raman scattering is weak, and the Raman signal is easily disturbed by autofluorescence arising from endogenous fluorescent molecules in biological tissue. In this work, a sensitive lignin detection platform was fabricated by a composite with a polyaniline (PANI) nanofiber and toluidine blue (TB) under the excitation of visible light. In this platform, TB acts as a specific marker for lignin, and a PANI nanofiber was used as a reinforcing reagent to improve the Raman intensity of TB. When wood slice is impregnated with TB/PANI, the lignin in wood can be precisely labeled with the TB, and the Raman intensity of TB had a threefold increase at 532?nm excitation. This TB/PANI detection platform is expected to make a significant contribution in qualitative and quantitative analysis of lignin to avoid autofluorescence in various lignin-based biosciences.
机译:拉曼光谱是广泛应用于木质科学,因为它具有无损,快速性和高分辨率的特点。然而,拉曼散射较弱,并且拉曼信号通过生物组织中的内源荧光分子产生的自发荧光容易受到干扰。在这项工作中,在可见光的激发下,通过用聚苯胺(PANI)纳米纤维和甲苯胺蓝(TB)的复合材料制造敏感的木质素检测平台。在该平台中,TB用作木质素的特定标志物,并且PANI纳米纤维用作增强试剂以改善TB的拉曼强度。当木材切片用TB / PANI浸渍时,木材中的木质素可以用TB精确标记,并且TB的拉曼强度在532℃下增加三倍。该TB / PANI检测平台预计对木质素的定性和定量分析进行了显着贡献,以避免基于木质素的生物荧光的自发荧光。

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