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Optically Transparent Wood from a Nanoporous Cellulosic Template: Combining Functional and Structural Performance

Biomacromolecules · 2016 · Vol. 17(4) · pp. 1358–1364
Yuanyuan LiQiliang FuShun YuMin YanLars A. Berglund

Abstract

Optically transparent wood (TW) with transmittance as high as 85% and haze of 71% was obtained using a delignified nanoporous wood template. The template was prepared by removing the light-absorbing lignin component, creating nanoporosity in the wood cell wall. Transparent wood was prepared by successful impregnation of lumen and the nanoscale cellulose fiber network in the cell wall with refractive-index-matched prepolymerized methyl methacrylate (MMA). During the process, the hierarchical wood structure was preserved. Optical properties of TW are tunable by changing the cellulose volume fraction. The synergy between wood and PMMA was observed for mechanical properties. Lightweight and strong transparent wood is a potential candidate for lightweight low-cost, light-transmitting buildings and transparent solar cell windows.

Advanced Cellulose Research StudiesLignin and Wood ChemistryMaterial Properties and ProcessingNanoporousCelluloseMaterials scienceTransmittanceLigninNanocelluloseComposite materialRefractive indexNanoscopic scaleChemical engineering

MeSH terms

Cell WallCelluloseLigninRefractometryWoodOptical DevicesMechanical PhenomenaOptical Phenomena

Funding

  • Knut och Alice Wallenbergs Stiftelse
  • China Scholarship Council
  • Wallenberg Wood Science Center
Citations
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