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具有射频透明、导电性能的石墨烯纳米带薄膜作为除冰加热层。

Radio-frequency-transparent, electrically conductive graphene nanoribbon thin films as deicing heating layers.

机构信息

Lockheed Martin Corp. , MS2, Mail Stop 137-101, 199 Borton Landing Road, Moorestown, New Jersey 08057-0927, United States.

出版信息

ACS Appl Mater Interfaces. 2014 Jan 8;6(1):298-304. doi: 10.1021/am404203y. Epub 2013 Dec 23.

Abstract

Deicing heating layers are frequently used in covers of large radio-frequency (RF) equipment, such as radar, to remove ice that could damage the structures or make them unstable. Typically, the deicers are made using a metal framework and inorganic insulator; commercial resistive heating materials are often nontransparent to RF waves. The preparation of a sub-skin-depth thin film, whose thickness is very small relative to the RF skin (or penetration) depth, is the key to minimizing the RF absorption. The skin depth of typical metals is on the order of a micrometer at the gigahertz frequency range. As a result, it is very difficult for conventional conductive materials (such as metals) to form large-area sub-skin-depth films. In this report, we disclose a new deicing heating layer composite made using graphene nanoribbons (GNRs). We demonstrate that the GNR film is thin enough to permit RF transmission. This metal-free, ultralight, robust, and scalable graphene-based RF-transparent conductive coating could significantly reduce the size and cost of deicing coatings for RF equipment covers. This is important in many aviation and marine applications. This is a demonstration of the efficacy and applicability of GNRs to afford performances unattainable by conventional materials.

摘要

除冰加热层常用于大型射频 (RF) 设备的罩子上,如雷达,以去除可能损坏结构或使它们不稳定的冰。通常,除冰器由金属框架和无机绝缘体制成;商业电阻加热材料通常对 RF 波不透明。制备亚皮肤深度薄膜是关键,其厚度相对于 RF 皮肤(或穿透)深度非常小,以最小化 RF 吸收。典型金属的皮肤深度在千兆赫频率范围内约为一微米。因此,常规导电材料(如金属)很难形成大面积亚皮肤深度的薄膜。在本报告中,我们披露了一种使用石墨烯纳米带 (GNR) 制成的新型除冰加热层复合材料。我们证明了 GNR 薄膜足够薄,可以允许 RF 传输。这种无金属、超轻、坚固且可扩展的基于石墨烯的 RF 透明导电涂层可以显著减小 RF 设备罩子除冰涂层的尺寸和成本。这在许多航空和海洋应用中很重要。这证明了 GNR 可以提供传统材料无法实现的性能,从而实现有效性和适用性。

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