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Transparent nanopaper with tailored optical properties

机译:与定制的光学透明nanopaper属性

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Nanopaper is a flexible, transparent, and renewable substrate that is emerging as a replacement for plastic in printed "green" electronics. The underlying science of transparency of nanopaper is that the diameter of these fibers is much smaller than the light wavelength, which significantly decreases the light scattering as compared to regular fibers. Cellulose fibers have a hierarchical structure, which consists of numerous smaller fibers. In this manuscript, we demonstrate a nanopaper design with different fiber diameters, and conclude that the light transmittance and scattering depend on the fiber diameter and packing density. The optical properties of the nanopaper and their dependence on the cellulose fiber diameter are thoroughly explained through Chandrasekhar's radiative-transfer theory and multiple scattering method simulations. The controllable optical properties of highly transparent nanopaper present an unprecedented opportunity for growth of next-generation optoelectronics.
机译:Nanopaper是一个灵活的、透明的和可再生能源成为一个衬底替代塑料印刷“绿色”电子产品。透明度nanopaper直径这些纤维比光要小得多波长,这大大降低了光散射比普通纤维。纤维素纤维有一个层次结构,由许多较小的纤维。这个手稿,我们展示nanopaper设计不同的纤维直径和透光率和结论散射取决于纤维直径和包装密度。nanopaper及其对纤维素的依赖纤维直径彻底解释钱德拉塞卡的辐射传输理论和多重散射法模拟。高度可控的光学性质透明nanopaper呈现前所未有的下一代的成长的机会光电子学。

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