首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Flexible, highly transparent and iridescent all-cellulose hybrid nanopaper with enhanced mechanical strength and writable surface
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Flexible, highly transparent and iridescent all-cellulose hybrid nanopaper with enhanced mechanical strength and writable surface

机译:具有增强的机械强度和可写表面的柔性,高度透明和虹彩全纤维素混合纳米纸

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摘要

With the development of flexible electronic devices, there is increasing requirement for the inexpensive and environmental-friendly substrates. Cellulose paper has gained great attention because of its abundance, biodegradability and renewability. In this paper, we designed a hybrid nanopaper by introducing native cellulose nanofibrils (CNFs) into cellulose nanpwhiskers (CNWs) matrix, which achieved a high optical transmittance while retaining iridescence under polarizing film. This nanopaper is less expensive than neat CNFs-based nanopaper and more feasible for large-scale production. Besides, our transparent hybrid nanopaper possesses the writable surface like regular paper. Compared with commercial paper, however, hybrid nanopaper shows superior optical properties and low surface roughness. The combination of these characteristics makes this nanopaper an excellent candidate for substrates of flexible electronic devices.
机译:随着柔性电子设备的发展,对廉价且环保的基板的需求不断增长。纤维素纸的丰富性,可生物降解性和可再生性已引起广泛关注。在本文中,我们通过将天然纤维素纳米纤丝(CNFs)引入纤维素纳米晶须(CNWs)基质中,从而设计了一种杂化纳米纸,该纸既获得了高透光率,又在偏振膜下保持了虹彩。这种纳米纸比纯的基于CNF的纳米纸便宜,并且更适合大规模生产。此外,我们的透明杂化纳米纸具有像普通纸一样的可写表面。然而,与商用纸相比,混合纳米纸显示出优异的光学性能和低表面粗糙度。这些特性的结合使该纳米纸成为柔性电子设备基板的理想选择。

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