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Room temperature rubbing for few-layer two-dimensional thin flakes directly on flexible polymer substrates

机译:直接在柔性聚合物基材上室温摩擦几层二维薄片

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摘要

The functional layers of few-layer two-dimensional (2-D) thin flakes on flexible polymers for stretchable applications have attracted much interest. However, most fabrication methods are “indirect” processes that require transfer steps. Moreover, previously reported “transfer-free” methods are only suitable for graphene and not for other few-layer 2-D thin flakes. Here, a friction based room temperature rubbing method is proposed for fabricating different types of few-layer 2-D thin flakes (graphene, hexagonal boron nitride (h-BN), molybdenum disulphide (MoS2), and tungsten disulphide (WS2)) on flexible polymer substrates. Commercial 2-D raw materials (graphite, h-BN, MoS2, and WS2) that contain thousands of atom layers were used. After several minutes, different types of few-layer 2-D thin flakes were fabricated directly on the flexible polymer substrates by rubbing procedures at room temperature and without any transfer step. These few-layer 2-D thin flakes strongly adhere to the flexible polymer substrates. This strong adhesion is beneficial for future applications.
机译:用于可拉伸应用的柔性聚合物上的几层二维(2-D)薄片的功能层引起了人们的极大兴趣。但是,大多数制造方法是需要转移步骤的“间接”工艺。此外,先前报道的“无转移”方法仅适用于石墨烯,不适用于其他几层的2-D薄片。在这里,提出了一种基于摩擦的室温摩擦法,用于制造不同类型的几层二维薄薄片(石墨烯,六方氮化硼(h-BN),二硫化钼(MoS 2 ),和二硫化钨(WS 2 ))在柔性聚合物基材上。使用包含数千个原子层的商业二维原材料(石墨,h-BN,MoS 2 和WS 2 )。几分钟后,通过在室温下进行摩擦程序,无需任何转移步骤,即可在柔性聚合物基材上直接制备不同类型的几层二维薄薄片。这些几层二维薄薄片牢固地粘附在柔性聚合物基材上。这种强大的附着力对于将来的应用是有益的。

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