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Functional lignocellulosic materials prepared by ATRP from a wood scaffold

机译:ATRP由木脚手架制备的功能性木质纤维素材料

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摘要

Wood, a natural and abundant source of organic polymers, has been used as a scaffold to develop novel wood-polymer hybrid materials. Through a two-step surface-initiated Atom Transfer Radical Polymerization (ATRP), the porous wood structure can be effectively modified with polymer chains of various nature. In the present study, polystyrene and poly(N-isopropylacrylamide) were used. As shown with various characterization techniques including confocal Raman microscopy, FTIR, and SEM/EDX, the native wood ultrastructure and features are retained and the polymer chains can be introduced deep within the wood, i.e. inside the wood cell walls. The physical properties of the new materials have been studied, and results indicate that the insertion of polymer chains inside the wood cell wall alters the intrinsic properties of wood to yield a hybrid composite material with new functionalities. This approach to the functionalization of wood could lead to the fabrication of a new class of interesting functional materials and promote innovative utilizations of the renewable resource wood.
机译:木材是一种天然且丰富的有机聚合物来源,已被用作脚手架来开发新型的木材-聚合物杂化材料。通过两步表面引发的原子转移自由基聚合(ATRP),可以用各种性质的聚合物链有效地改性多孔木结构。在本研究中,使用了聚苯乙烯和聚(N-异丙基丙烯酰胺)。如通过包括共焦拉曼显微镜,FTIR和SEM / EDX在内的各种表征技术所显示的,天然木材的超微结构和特征得以保留,并且聚合物链可引入木材内部深处,即木材细胞壁内。对新材料的物理性能进行了研究,结果表明,将聚合物链插入木材细胞壁内会改变木材的固有性能,从而产生具有新功能的杂化复合材料。木材功能化的这种方法可以导致制造一类新的有趣的功能材料,并促进可再生资源木材的创新利用。

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