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透明木材:迈向高性能建筑材料之路。

Clear Wood toward High-Performance Building Materials.

机构信息

Department of Materials Science and Engineering , University of Maryland College Park , College Park , Maryland 20742 , United States.

Department of Mechanical Engineering , University of Maryland , College Park , Maryland 20742 , United States.

出版信息

ACS Nano. 2019 Sep 24;13(9):9993-10001. doi: 10.1021/acsnano.9b00089. Epub 2019 Sep 10.

Abstract

Developing advanced building materials with both excellent thermal insulating and optical properties to replace common glass (thermal conductivity of ∼1 W m K) is highly desirable for energy-efficient applications. The recent development of transparent wood suggests a promising building material with many advantages, including high optical transmittance, tunable optical haze, and excellent thermal insulation. However, previous transparent wood materials generally have a high haze (typically greater than 40%), which is a major obstacle for their practical application in the replacement of glass. In this work, we fabricate a clear wood material with an optical transmittance as high as 90% and record-low haze of 10% using a delignification and polymer infiltration method. The significant removal of wood components results in a highly porous microstructure, much thinner wood cell walls, and large voids among the cellulose fibrils, which a polymer can easily enter, leading to the dense structure of the clear wood. The separated cellulose fibrils that result from the removal of the wood components dramatically weaken light scattering in the clear wood, which combined with the highly dense structure produces both high transmittance and extremely low haze. In addition, the clear wood exhibits an excellent thermal insulation property with a low thermal conductivity of 0.35 W m K (one-third of ordinary glass); thus, the application of clear wood can greatly improve the energy efficiency of buildings. The developed clear wood, combining excellent thermal insulating and optical properties, represents an attractive alternative to common glass toward energy-efficient buildings.

摘要

开发具有优异隔热和光学性能的先进建筑材料来替代普通玻璃(导热系数约为 1 W m K),对于节能应用是非常理想的。透明木材的最新发展为建筑材料提供了一种很有前途的选择,具有许多优点,包括高透光率、可调光学雾度和优异的隔热性能。然而,以前的透明木材材料通常具有较高的雾度(通常大于 40%),这是它们在玻璃替代方面实际应用的主要障碍。在这项工作中,我们使用脱木质素和聚合物渗透的方法,制造出一种透光率高达 90%、雾度低至 10%的清晰木材材料。木材成分的大量去除导致了高度多孔的微观结构,更薄的木材细胞壁,以及纤维素原纤维之间的大空隙,聚合物可以很容易地进入这些空隙,从而形成清晰木材的致密结构。木质素去除后分离的纤维素原纤维在清晰木材中显著减弱了光散射,再加上高度致密的结构,产生了高透光率和极低的雾度。此外,清晰木材还具有出色的隔热性能,导热系数低至 0.35 W m K(普通玻璃的三分之一);因此,清晰木材的应用可以大大提高建筑物的能源效率。这种具有优异隔热和光学性能的开发清晰木材代表了一种有吸引力的普通玻璃替代品,可用于节能建筑。

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