聚集对木质素荧光性影响的研究进展及其在微观结构分析中的应用。

Insights into the effect of aggregation on lignin fluorescence and its application for microstructure analysis.

机构信息

College of Chemistry and Chemical Engineering, Taiyuan University of Technology, Taiyuan, China; School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou, China; State Key Laboratory of Pulp and Paper Engineering, South China University of Technology, Guangzhou, China.

School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou, China; State Key Laboratory of Pulp and Paper Engineering, South China University of Technology, Guangzhou, China.

出版信息

Int J Biol Macromol. 2020 Jul 1;154:981-988. doi: 10.1016/j.ijbiomac.2020.03.056. Epub 2020 Mar 27.

Abstract

As a natural fluorescent material, the fluorescent property and mechanism of lignin were elusive until now, which hindered the high value application of lignin fluorescence. Herein, we firstly probed the previous studies on lignin fluorescence and the results indicated that lignin microstructure was an important factor for its complex fluorescence property because of fluorophore interaction and aggregation behavior. Following the rules, lignin fluorescence was explored by analyzing its aggregation fluorescence behaviors and basic fluorescence properties based on the theory of traditional conjugated luminescence and aggregation-induced emission. It was demonstrated that intermicellar aggregation of loose lignin micelle made no substantial effect on lignin fluorescence, while intramicellar aggregation could induce the enhancement of lignin fluorescence before the micellar compactness exceeded a critical value. Combined with the physicochemical structures and fluorescence properties of lignin, aggregation-induced conjugation from phenylpropane units was believed as the main sources of the visible emission of lignin and different phenylpropane aggregates consequently formed the multi-fluorophore system in lignin micelle. Furthermore, lignin aggregation fluorescence behavior has great potential in its microstructure analysis and a case study of pH/ionic strength-induced solution behavior analysis was presented. This work provided a totally new prospective for lignin fluorescence.

摘要

作为一种天然荧光材料,木质素的荧光性质和机制至今仍难以捉摸,这阻碍了木质素荧光的高值应用。在此,我们首次探讨了木质素荧光的先前研究,结果表明木质素的微观结构是其复杂荧光性质的一个重要因素,因为荧光团之间的相互作用和聚集行为。根据传统共轭发光和聚集诱导发射理论,遵循这一规律,通过分析木质素的聚集荧光行为和基本荧光性质,探索了木质素的荧光。结果表明,松散木质素胶束的胶束间聚集对木质素荧光没有实质性影响,而在胶束紧密性超过临界值之前,胶束内聚集可以诱导木质素荧光增强。结合木质素的物理化学结构和荧光性质,认为苯丙烷单元的聚集诱导共轭是木质素可见发射的主要来源,不同的苯丙烷聚集体因此在木质素胶束中形成了多荧光团体系。此外,木质素聚集荧光行为在其微观结构分析中具有很大的潜力,并提出了一个关于 pH/离子强度诱导溶液行为分析的案例研究。这项工作为木质素荧光提供了一个全新的视角。

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