Department of Fibre and Polymer Technology, Wallenberg Wood Science Center, KTH Royal Institute of Technology, SE-100 44 Stockholm, Sweden.
Department of Applied Physics, KTH Royal Institute of Technology, 114 19 Stockholm, Sweden.
ACS Appl Mater Interfaces. 2020 Oct 14;12(41):46914-46922. doi: 10.1021/acsami.0c12505. Epub 2020 Sep 30.
Transparent wood (TW) is an interesting polymer biocomposite with potential for buildings and photonics applications. TW materials need to be eco-friendly and readily processed with few defects, for high optical transmittance and low transmission scattering at wide angles (haze). Two wood templates with different lignin-content are impregnated with a new thiol-ene thermoset system. The more eco-friendly bleached wood template results in transparent wood with high optical transmission and much reduced transmission haze, due to strong reduction of interfacial air gaps. Characterization includes template composition, thiol-ene distribution, and polymerization in wood cell wall by EDX and confocal Raman microscopy, also NMR and DSC, tensile testing and FE-SEM fractography for morphology and wood/thiol-ene interface adhesion assessment. The wood template is a true nanocomposite with thiol-ene polymer located inside the nanoporous wood cell wall. Advanced TW applications require not only appropriate wood template modification and careful polymer matrix selection but also tailoring of the process to impregnation and polymerization mechanisms, in order to reduce optical defects.
透明木材(TW)是一种具有应用于建筑和光子学潜力的有趣聚合物生物复合材料。TW 材料需要具有环保性,并且易于加工,缺陷少,在宽角度(雾度)下具有高光透过率和低传输散射。两种具有不同木质素含量的木材模板用一种新的硫醇-烯热固性体系进行浸渍。更环保的漂白木材模板由于界面气隙的强烈减少,导致透明木材具有高透光率和大大降低的传输雾度。特性包括模板成分、硫醇-烯分布以及通过 EDX 和共聚焦拉曼显微镜、NMR 和 DSC、拉伸测试和 FE-SEM 断口形貌对木材细胞壁内的聚合进行评估,以及对木材/硫醇-烯界面附着力的评估。木材模板是一种真正的纳米复合材料,硫醇-烯聚合物位于纳米多孔木材细胞壁内。高级 TW 应用不仅需要适当的木材模板改性和仔细选择聚合物基质,还需要根据浸渍和聚合机制对工艺进行定制,以减少光学缺陷。