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Ultrafast Heating for Intrinsic Properties of Atomically Thin Two-Dimensional Materials on Plastic Substrates

机译:超快加热用于塑料基板上原子薄二维材料的本征特性

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摘要

Despite recent progress in producing flexible and stretchable electronics based on two-dimensional (2D) nanosheets, their intrinsic properties are often degraded by the presence of polymeric residues that remain attached to the 2D nanosheet surfaces following fabrication. Further breakthroughs are therefore keenly awaited to obtain clean surfaces compatible with flexible applications. Here, we report a method that allows the 2D nanosheets to be intrinsically integrated onto flexible substrates. The method involves thermal decomposition of polymeric residues by microwave-induced ultrafast heating of the surface without affecting the underlying flexible substrate. Mapping the C=O stretching mode by Fourier-transform infrared spectroscopy in combination with atomic force microscopy confirms elimination of the polymeric residues from the 2D nanosheet surface. Flexible devices prepared using microwave-cleaned 2D nanosheets show enhanced electrical, optical, and electrothermal performances. This simple technique is applicable to a wide range of 2D nanomaterials and represents an important advance in the field of flexible devices.
机译:尽管最近在基于二维(2D)纳米片的柔性和可拉伸电子产品的生产方面取得了进展,但是由于存在残留的聚合物残留物,这些残留物在制造后仍然附着在2D纳米片的表面上,因此其固有性能经常会下降。因此,迫切需要进一步的突破以获得与柔性应用兼容的清洁表面。在这里,我们报告了一种方法,该方法可以将2D纳米片固有地集成到柔性基板上。该方法涉及通过微波诱导的表面超快加热对聚合物残留物进行热分解,而不影响下面的柔性基材。通过傅里叶变换红外光谱结合原子力显微镜对C = O拉伸模式进行映射,可以确认从2D纳米片表面消除了聚合物残留。使用微波清洁的2D纳米片制备的柔性设备显示出增强的电,光和电热性能。这种简单的技术适用于广泛的2D纳米材料,代表了柔性器件领域的重要进步。

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