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针对绿色光管理应用,对木质素进行高效且选择性的改性,以制备具有光学可设计性和多功能性的木质纤维素纳米纸。

Highly efficient and selective modification of lignin towards optically designable and multifunctional lignocellulose nanopaper for green light-management applications.

作者信息

Jiang Yan, Wang Zehai, Zhou Lin, Jiang Shan, Liu Xiuyu, Zhao Hui, Huang Qin, Wang Lijun, Chen Guoning, Wang Shuangfei

机构信息

College of Light Industry and Food Engineering, Guangxi University, Daxue Road 100, Nanning 530004, PR China; Guangxi Key Laboratory of Clean Pulp & Papermaking and Pollution Control, Nanning 530004, PR China.

School of Chemistry and Chemical Engineering, Guangxi University for Nationalities, Daxue Road 158, Nanning 530006, PR China; Guangxi Bossco Environmental Protection Technology Co., Ltd., Nanning 530007, PR China; Guangxi Key Laboratory of Chemistry and Engineering of Forest Products, Nanning 530006, PR China.

出版信息

Int J Biol Macromol. 2022 May 1;206:264-276. doi: 10.1016/j.ijbiomac.2022.02.147. Epub 2022 Feb 28.

Abstract

Transparent lignocellulose nanopaper (LNP) has been demonstrated to be a promising candidate light-management material for next-generation optical engineering applications. Similar to its role in plant cell walls, lignin serves as a vital functional component in LNP matrices. However, its intrinsic light absorption property renders LNP undesirable for a range of optical management systems. Here, a highly efficient, controllable and ecofriendly lignin modification strategy is developed for modulating the optical performance of LNPs by taking advantage of the beneficial synergistic effect of HO and UV light in selectively eliminating lignin chromophores. The obtained lignin-modified LNP features not only a high visible light transmittance (89%) but also a high haze (90%) and excellent UV-shielding capacity, owing to the well-preserved lignin aromatic skeleton structures after lignin modification. Furthermore, patterning is easily achieved on hot-pressing-induced densified LNPs through a selective lignin modification approach, which endows LNPs with intriguing optical designability. Benefitting from the multifunctionality of lignin components for nanopaper matrices, patterned LNPs demonstrate outstanding water and thermal stability, barrier properties, durability and biodegradability, which are of great significance for practical applications. Furthermore, we demonstrate the great applicability of this optically designable and multifunctional LNP as a light-management material for energy efficient buildings by highlighting its attractive sun- and indoor- light managing effects, effective thermal insulation, as well as superior durability for long-term use. In combination with its efficient, ecofriendly and controllable production, this novel high-performing LNP holds great potential in many other applications that require light-management structural materials, such as optoelectronic and sensing devices.

摘要

透明木质纤维素纳米纸(LNP)已被证明是下一代光学工程应用中一种很有前途的光管理材料候选物。与它在植物细胞壁中的作用类似,木质素在LNP基质中是一种重要的功能成分。然而,其固有的光吸收特性使得LNP在一系列光学管理系统中并不理想。在此,通过利用羟基自由基(HO)和紫外光在选择性消除木质素发色团方面的有益协同效应,开发了一种高效、可控且环保的木质素改性策略,用于调节LNP的光学性能。所获得的木质素改性LNP不仅具有高可见光透过率(89%),还具有高雾度(90%)和优异的紫外线屏蔽能力,这归因于木质素改性后木质素芳香骨架结构得以良好保留。此外,通过选择性木质素改性方法,在热压诱导致密化的LNP上很容易实现图案化,这赋予了LNP有趣的光学可设计性。受益于木质素成分对纳米纸基质的多功能性,图案化的LNP表现出出色的水稳定性、热稳定性、阻隔性能、耐久性和生物降解性,这对于实际应用具有重要意义。此外,通过突出其吸引人的阳光和室内光管理效果、有效的隔热性能以及长期使用的卓越耐久性,我们展示了这种具有光学可设计性和多功能性的LNP作为节能建筑光管理材料的巨大适用性。结合其高效、环保且可控的生产方式,这种新型高性能LNP在许多其他需要光管理结构材料的应用中,如光电子和传感设备,具有巨大潜力。

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