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Low-temperature fabrication of nanographene on a copper substrate using pentacene

机译:使用并五苯在铜基板上低温制备纳米石墨烯

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We developed a low-temperature fabrication method for nanographene on a copper (Cu) substrate. This process is called hot-mesh deposition (HMD) and uses pentacene, H-2, and a tungsten (W) mesh. In HMD, pentacene and H-2 molecules decompose on a heated W mesh placed between a pentacene source in a molybdenum boat and a Cu substrate. A clean surface was obtained using atomic hydrogen treatment prior to nanocarbon film formation. The nanocarbon films consisted of nanographenes, which formed on the cleaned Cu substrate. The peaks due to the D and D' bands of nanographene were observed in the Raman spectrum. It was found that nanographene could be produced by HMD even at temperatures as low as 250 degrees C. It is considered that the key factors for the low-temperature formation of nanographene are a clean Cu surface, and the reaction of pentacene with the 6,13-dihydropentacene generated on the heated W mesh.
机译:我们开发了一种在铜(Cu)衬底上纳米石墨烯的低温制造方法。此过程称为热网沉积(HMD),使用并五苯,H-2和钨(W)网格。在HMD中,并五苯和H-2分子在加热的W网格上分解,该W网格位于钼舟中的并五苯来源和Cu衬底之间。在形成纳米碳膜之前,使用原子氢处理可获得清洁的表面。纳米碳膜由纳米石墨烯组成,该纳米石墨烯在清洁的Cu基板上形成。在拉曼光谱中观察到由于纳米石墨烯的D和D'带引起的峰。发现即使在低至250℃的温度下也可以通过HMD制备纳米石墨烯。认为形成纳米石墨烯的低温的关键因素是清洁的Cu表面,以及并五苯与6,3的反应。在加热的W网上生成13-二氢并五苯。

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