College of Chemistry and Chemical Engineering , Taiyuan University of Technology , Taiyuan 030024 , P. R. China.
J Agric Food Chem. 2019 Jan 30;67(4):1044-1051. doi: 10.1021/acs.jafc.8b05286. Epub 2019 Jan 22.
Lignin is a kind of natural fluorescent polymer material. However, the application based on the fluorescent property of lignin was rarely reported. Herein, a noncovalent lignin-based fluorescence resonance energy transfer (FRET) system was readily constructed by physical blending method with spirolactam rhodamine B (SRhB) and lignosulfonate (LS) as the acceptor and donor groups, respectively. The FRET behavior, self-assembly, and energy transfer mechanism of SRhB/LS composite were systematically studied. It was demonstrated that LS could be used as a convenient aptamer as energy donor to construct water-soluble ratiometric sensors because of its inherent property of intramicelle energy transfer cascades. Our results not only present a facile and general strategy for producing lignin-based functional material but also provide a fundamental understanding about lignin fluorescence to promote the functional and high-valued applications of lignin fluorescence characteristic.
木质素是一种天然荧光聚合物材料。然而,基于木质素荧光性质的应用却很少有报道。在此,我们通过物理共混的方法,以螺环酰胺罗丹明 B(SRhB)和木质素磺酸盐(LS)分别作为受体和供体基团,构建了一种非共价的基于木质素的荧光共振能量转移(FRET)体系。系统研究了 SRhB/LS 复合材料的 FRET 行为、自组装和能量转移机制。实验结果表明,LS 由于其分子内能量转移级联的固有特性,可用作方便的适体作为能量供体来构建水溶性比率型传感器。我们的研究结果不仅为制备基于木质素的功能材料提供了一种简单而通用的策略,而且还为木质素荧光提供了基本的认识,以促进木质素荧光特性的功能化和高附加值应用。