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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Moth-eye effect in hierarchical carbon nanotube anti-reflective coatings
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Moth-eye effect in hierarchical carbon nanotube anti-reflective coatings

机译:分层碳纳米管减反射膜中的蛾眼效应

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摘要

Optical anti-reflection is achieved in natural surfaces by exploiting hierarchical surface morphology. Here, we show that single-walled carbon nanotube (SWCNT) coatings deposited on silicon (Si) realize a broad-band, omnidirectional, and nearly polarization-independent suppression of Si optical reflection, with an increase of film absorption. This is attributed to a biomimetic, hierarchical surface morphology, which introduces a graded refractive index-the so-called moth-eye effect. Moreover, the anti-reflective behavior can be tuned by varying the SWCNT film thickness. The SWCNT random networks are realized by a simple, rapid, reproducible, and inexpensive solution-processing technique and deposited on Si by a dry-transfer printing method, at room temperature. The technology may be used to coat arbitrary substrates such as optical instruments, radiometric applications, light and thermal sensors, solar cells, and light emitting diodes; thus improving the device absorption or emission of light, due to the film optical properties. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过利用分层表面形态在自然表面中实现光学减反射。在这里,我们表明,沉积在硅(Si)上的单壁碳纳米管(SWCNT)涂层实现了宽带,全向和几乎偏振无关的Si光反射抑制,并增加了薄膜吸收率。这归因于仿生的,分层的表面形态,该形态引入了渐变的折射率-所谓的蛾眼效应。而且,可以通过改变SWCNT膜的厚度来调节抗反射性能。 SWCNT随机网络是通过简单,快速,可重现和廉价的溶液处理技术实现的,并在室温下通过干转移印刷法沉积在Si上。该技术可用于涂覆任意基材,例如光学仪器,辐射测量应用,光和热传感器,太阳能电池和发光二极管;由于膜的光学特性,因此改善了器件对光的吸收或发射。 (C)2016 Elsevier Ltd.保留所有权利。

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