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Metal-graphene-metal sandwich contacts for enhanced interface bonding and work function control

机译:金属-石墨烯-金属夹层触点,用于增强界面粘结和功函数控制

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摘要

Figure Persented: Only a small fraction of all available metals has been used as electrode materials for carbon-based devices due to metal-graphene interface debonding problems. We report an enhancement of the bonding energy of weakly interacting metals by using a metal-graphene-metal sandwich geometry, without sacrificing the intrinsic π-electron dispersions of graphene that is usually undermined by strong metal-graphene interface hybridization. This sandwich structure further makes it possible to effectively tune the doping of graphene with an appropriate selection of metals. Density functional theory calculations reveal that the strengthening of the interface interaction is ascribed to an enhancement of interface dipole-dipole interactions. Raman scattering studies of metal-graphene-copper sandwiches are used to validate the theoretically predicted tuning of graphene doping through sandwich structures.
机译:图表:由于金属-石墨烯界面的剥离问题,所有可用金属中只有一小部分被用作碳基设备的电极材料。我们报告了通过使用金属-石墨烯-金属夹心几何结构增强了弱相互作用金属的键合能的增强,而不牺牲通常被强金属-石墨烯界面杂化破坏的石墨烯的固有π电子分散性。该夹层结构还使得可以通过适当选择金属来有效地调节石墨烯的掺杂。密度泛函理论计算表明,界面相互作用的增强归因于界面偶极-偶极相互作用的增强。金属-石墨烯-铜夹层的拉曼散射研究用于验证通过夹层结构对石墨烯掺杂进行理论预测的调整。

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