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Clay-based nanocomposite coating for flexible optoelectronics applying commercial polymers

机译:粘土基纳米复合涂料,用于应用商业聚合物的柔性光电

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摘要

Transparency, flexibility, and especially ultralow oxygen (OTR) and water vapor (WVTR) transmission rates are the key issues to be addressed for packaging of flexible organic photovoltaics and organic light-emitting diodes. Concomitant optimization of all essential features is still a big challenge. Here we present a thin (1.5 μm), highly transparent, and at the same time flexible nanocomposite coating with an exceptionally low OTR and WVTR (1.0 × 10~(-2) cm~3 m~(-2) day~(-1) bar ~(-1) and <0.05 g m~(-2) day~(-1) at 50% RH, respectively). A commercially available polyurethane (Desmodur N 3600 and Desmophen 670 BA, Bayer MaterialScience AG) was filled with a delaminated synthetic layered silicate exhibiting huge aspect ratios of about 25 000. Functional films were prepared by simple doctor-blading a suspension of the matrix and the organophilized clay. This preparation procedure is technically benign, is easy to scale up, and may readily be applied for encapsulation of sensitive flexible electronics.
机译:透明性,柔韧性,尤其是超低氧(OTR)和水蒸气(WVTR)的传输速率是包装柔性有机光伏电池和有机发光二极管需要解决的关键问题。同时优化所有基本功能仍然是一个很大的挑战。在这里,我们介绍了一种薄的(1.5μm),高度透明的,同时具有柔性的纳米复合涂层,其OTR和WVTR非常低(1.0×10〜(-2)cm〜3 m〜(-2)天〜(- 1)分别在50%RH的条件下〜(-1)和<0.05 gm〜(-2)天〜(-1))。用市售聚氨酯(Desmodur N 3600和Desmophen 670 BA,Bayer MaterialScience AG)填充分层的合成层状硅酸盐,其长径比约为25 000。有机粘土。该制备过程在技术上是无害的,易于扩展,并且可以容易地应用于敏感的柔性电子器件的封装。

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