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六方氮化硼的超薄高温抗氧化涂层。

Ultrathin high-temperature oxidation-resistant coatings of hexagonal boron nitride.

机构信息

1] Department of Mechanical Engineering and Materials Science, Rice University, 6100 Main Street, MS-321, Houston, Texas 77005, USA [2].

出版信息

Nat Commun. 2013;4:2541. doi: 10.1038/ncomms3541.

Abstract

Hexagonal boron nitride is a two-dimensional layered material that can be stable at 1,500 °C in air and will not react with most chemicals. Here we demonstrate large-scale, ultrathin, oxidation-resistant coatings of high-quality hexagonal boron nitride layers with controlled thicknesses from double layers to bulk. We show that such ultrathin hexagonal boron nitride films are impervious to oxygen diffusion even at high temperatures and can serve as high-performance oxidation-resistant coatings for nickel up to 1,100 °C in oxidizing atmospheres. Furthermore, graphene layers coated with a few hexagonal boron nitride layers are also protected at similarly high temperatures. These hexagonal boron nitride atomic layer coatings, which can be synthesized via scalable chemical vapour deposition method down to only two layers, could be the thinnest coating ever shown to withstand such extreme environments and find applications as chemically stable high-temperature coatings.

摘要

六方氮化硼是一种二维层状材料,在空气中 1500°C 下稳定,且大多数化学物质不会与其发生反应。在这里,我们展示了大规模、超薄、具有氧化防护能力的高质量六方氮化硼层,其厚度可精确控制在双层至体相范围内。我们证明了这种超薄的六方氮化硼薄膜即使在高温下也能阻止氧气扩散,因此可用作高性能氧化防护涂层,在氧化气氛中保护镍材料的使用温度高达 1100°C。此外,用几层六方氮化硼覆盖的石墨烯层也能在同样高的温度下得到保护。这些六方氮化硼原子层涂层可以通过可扩展的化学气相沉积方法在低至双层的情况下合成,这可能是迄今为止展示出的最薄的能够承受这种极端环境的涂层,并可作为化学稳定性的高温涂层得到应用。

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