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Controlled growth of carbon nanotube-graphene hybrid materials for flexible and transparent conductors and electron field emitters

机译:控制碳nanotube-graphene的增长混合材料灵活和透明导体和电子发射器

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We report a versatile synthetic process based on rapid heating and cooling chemical vapor deposition for the growth of carbon nanotube (CNT)-graphene hybrid materials where the thickness of graphene and density of CNTs are properly controlled. Graphene films are demonstrated as an efficient barrier layer for preventing poisoning of iron nanoparticles, which catalyze the growth of CNTs on copper substrates. Based on this method, the opto-electronic and field emission properties of graphene integrated with CNTs can be remarkably tailored. A graphene film exhibits a sheet resistance of 2.15 kΩ sq~(-1) with a transmittance of 85.6% (at 550 nm), while a CNT-graphene hybrid film shows an improved sheet resistance of 420 Ω sq~(-1) with an optical transmittance of 72.9%. Moreover, CNT-graphene films are demonstrated as effective electron field emitters with low turn-on and threshold electric fields of 2.9 and 3.3 V μm~(-1), respectively. The development of CNT-graphene films with a wide range of tunable properties presented in this study shows promising applications in flexible opto-electronic, energy, and sensor devices.
机译:我们报告一个基于通用的合成过程快速加热和冷却化学气沉积在碳纳米管的生长(问)石墨烯杂化材料的地方碳纳米管的石墨烯的厚度和密度适当的控制。证明是一个有效的阻挡层的铁纳米颗粒,防止中毒在铜催化碳纳米管的生长基质。基于这种方法,光电和场致发射性能的石墨烯整合与碳纳米管可以定制。电影展览2.15 kΩ的薄层电阻平方~(1)的透光率为85.6%(在550年海里),而CNT-graphene混合电影展示了一个提高薄层电阻420Ω平方~ (1)光学透过率为72.9%。CNT-graphene电影被证明是有效的电子领域的刺激和较低的排放阈值电场的2.9和3.3 Vμm ~(- 1),分别。CNT-graphene电影广泛的可调提出了研究显示属性在灵活的应用前景光电、能源和传感器设备。

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