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Ultra-thin films of solution-exfoliated hexagonal boron nitride by Langmuir deposition

机译:通过Langmuir沉积的溶液剥离六方硼氮化物的超薄薄膜

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摘要

Hexagonal boron nitride (hBN) is being increasingly used in optoelectronic devices to electronically and/or chemically isolate materials like graphene and carbon nanotubes from the environment or other device components. Solution exfoliation is a scalable method to produce large quantities of nanometer-thick hBN but it remains challenging to integrate these discrete flakes into uniform thin films by conventional solution processing approaches. In this work, we demonstrate how a modified Langmuir-Blodgett coating approach can be used to assemble densely tiled layers of the exfoliated hBN flakes arranged edge-to-edge at the air-water interface. These floating films can be transferred to effectively any solid substrate yielding pure hBN films without utilizing any surfactant or polymer additive. Building films layer-by-layer yields pinhole-free films over large areas (>cm(2)) with high optical transparency per deposition. The use of room temperature processing makes the approach particularly well-suited for use in transparent and flexible devices.
机译:六边形氮化硼(HBN)越来越多地用于光电器件,以电子和/或化学隔离物质,如石墨烯和来自环境或其他装置部件的碳纳米管。溶液剥离是一种可伸缩的方法,以产生大量的纳米厚的HBN,但是通过常规解决方案处理方法将这些离散的薄片集成到均匀的薄膜中,它保持挑战性。在这项工作中,我们展示了改进的Langmuir-Blodgett涂层方法如何用于组装在空气 - 水界面处排列边缘到边缘的剥落的HBN薄片的密集层层。这些浮动膜可以有效地转移以有效地产生纯HBN膜的任何固体基质,而不使用任何表面活性剂或聚合物添加剂。构建薄膜层逐层在大区域(> cm(2))上产生针孔膜,每沉积高光学透明度。使用室温处理使方法特别适用于透明和柔性器件。

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