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首页> 外文期刊>Journal of nanoscience and nanotechnology >Tuneable Physicochemical Properties of Thermally Annealed Graphene Oxide Powder and Thin Films
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Tuneable Physicochemical Properties of Thermally Annealed Graphene Oxide Powder and Thin Films

机译:热退火的石墨烯氧化物粉末和薄膜的可调理化性质

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摘要

The tuneability of oxygen containing groups in graphene oxide (GO) that controls physicochemical properties is highly desirable for device applications. In this context, the thermally reduced graphene oxide (r-GO) powders and spin coated thin films with varying sp(2)/sp(3) carbon network have been prepared using highly exfoliated GO (synthesized using modified Hummer's method with an innovative conjunction of lyophilisation). The additional step of lyophilisation results in the formation of highly exfoliated and monodispersed GO nanosheets as evidenced from FESEM, TEM, XRD, and Raman, FT-IR and UV-Vis spectroscopy. Spectroscopic analysis revealed the systematic evolution of r-GO with tuneable structural, optical and electrical properties as results of varying annealing temperatures (100-400 degrees C), due to restoration of sp(2) conducting carbon network i.e., the formation of new -C=C-network and Stones-Wales defect. The tuneability of physical properties is further corroborated by change in the resistance values, as evidenced through the current-voltage characteristics in GO thin film based lateral device structures with Ag and Al top contacts. Controlling physicochemical properties at relatively low processing temperature warrants the utilization of GO and r-GO in various electronic and optoelectronic devices.
机译:含石墨烯(GO)中的含氧基团的可融合性,用于控制物理化学特性,对于装置应用是非常理想的。在这种情况下,使用高度剥离的GO(使用改进的悍马方法合成了具有创新结合的改进的Hummer方法合成的热还原石墨烯氧化物(R-GO)氧化物(R-GO)氧化物(R-GO)粉末(2)/ SP(3)碳网络的纺丝膜和旋涂薄膜冻干)。冻干的额外步骤导致从FeSem,TEM,XRD和拉曼,FT-IR和UV-VIS光谱的形成高度剥离和单分散的GO纳米片。光谱分析揭示了R-GO与可调结构,光学和电性能的系统演化,因为由于SP(2)进行碳网络的恢复,因此,形成新的退火温度(100-400摄氏度)的结果。 C = C网络和石头威尔士缺陷。通过电阻值的变化进一步证实了物理性质的可调性,如通过具有Ag和Al顶部触点的Go薄膜的横向装置结构的电流 - 电压特性证明。在相对低的处理温度下控制物理化学特性值得进行Go和R-Go的利用,以便在各种电子和光电器件中进行。

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