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Adhesion properties of 2D materials

机译:2D材料的粘合性能

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摘要

Over the past few years, many researchers have been excited with the advent of two-dimensional (2D) materials such as graphene and molybdenum disulfide (MoS2) because of their intriguing physical and chemical properties. Furthermore, they have great potential in various applications including nanoelectronics, flexible or stretchable devices, energy conversion or storage devices, sensors, nanocomposites, and others. In addition to their electrical, mechanical, optical, and thermal properties, interfacial properties of 2D materials such as adhesion energy have recently attracted attention from researchers since interfacial interactions of 2D materials with others are of great importance in obtaining mechanical integrity of nanomanufacturing processes and related devices. In this respect, this paper reviews the adhesion properties of 2D materials. Measurement methods and characteristics of adhesion behaviors were summarized and discussed mainly for graphene and MoS2.
机译:在过去几年中,许多研究人员因其诱人的物理和化学性质而被诸如石墨烯和二硫化钼(MOS2)的二维(2D)材料的出现令人兴奋。 此外,它们在各种应用中具有很大的潜力,包括纳米电子,柔性或可拉伸装置,能量转换或储存装置,传感器,纳米复合材料等。 除了它们的电气,机械,光学和热性质之外,2D材料的界面性能,如粘附能量,最近引起了研究人员的关注,因为2D材料与他人的界面相互作用非常重要,在获得纳米制造过程的机械完整性和相关的 设备。 在这方面,本文评论了2D材料的粘合性能。 总结了粘附性行为的测量方法和特征,主要用于石墨烯和MOS2。

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