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Thermal stability of multilayer graphene films synthesized by chemical vapor deposition and stained by metallic impurities

机译:化学气相沉积合成并被金属杂质污染的多层石墨烯薄膜的热稳定性

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摘要

Thermal stability is an important property of graphene that requires thorough investigation. This study reports the thermal stability of graphene films synthesized by chemical vapor deposition (CVD) on catalytic nickel substrates in a reducing atmosphere. Electron microscopies, atomic force microscopy, and Raman spectroscopy, as well as electronic measurements, were used to determine that CVD-grown graphene films are stable up to 700°C. At 800°C, however, graphene films were etched by catalytic metal nanoparticles, and at 1000°C many tortuous tubular structures were formed in the film and carbon nanotubes were formed at the film edges and at catalytic metal-contaminated sites. Furthermore, we applied our pristine and thermally treated graphene films as active channels in field-effect transistors and characterized their electrical properties. Our research shows that remnant catalytic metal impurities play a critical role in damaging graphene films at high temperatures in a reducing atmosphere: this damage should be considered in the quality control of large-area graphene films for high temperature applications.
机译:热稳定性是石墨烯的重要特性,需要进行深入研究。这项研究报告了在还原性气氛中通过化学气相沉积(CVD)在催化镍基底上合成的石墨烯薄膜的热稳定性。使用电子显微镜,原子力显微镜和拉曼光谱以及电子测量来确定CVD生长的石墨烯薄膜在700°C的温度下是稳定的。然而,在800°C下,石墨烯薄膜被催化金属纳米粒子蚀刻,在1000°C下,薄膜中形成了许多曲折的管状结构,并且碳纳米管在薄膜边缘和受催化金属污染的位置处形成。此外,我们将原始和经过热处理的石墨烯薄膜用作场效应晶体管中的有源通道,并对其电性能进行了表征。我们的研究表明,残留的催化金属杂质在还原气氛中的高温下对石墨烯薄膜的破坏中起着关键作用:在高温应用的大面积石墨烯薄膜的质量控制中应考虑这种损害。

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