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Controlling the charge transfer flow at the graphene/pyrene-nitrilotriacetic acid interface

机译:控制石墨烯/芘 - 氮酰基乙酸界面处的电荷转移流动

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The fabrication of highly efficient bio-organic nanoelectronic devices is still a challenge due to the difficulty in interfacing the biomolecular component to the organic counterparts. One of the ways to overcome this bottleneck is to add a self-assembled monolayer (SAM) in between the electrode and the biological material. The addition of a pyrene-nitrilotriacetic acid layer to a graphene metal electrode enhances the charge transfer within the device. Our theoretical calculations and electrochemical results show that the formation of a pyrene-nitrilotriacetic acid SAM enforces a direct electron transfer from graphene to the SAM, while the addition of the Ni2+ cation and imidazole reverses the charge transfer direction, allowing an atomic control of the electron flow, which is essential for a true working device.
机译:高效生物有机纳米电子器件的制造仍然是由于难以将生物分子组分与有机对应物界面而仍然是挑战。 克服这种瓶颈的方法之一是在电极和生物材料之间添加自组装的单层(SAM)。 向石墨烯金属电极中加入芘 - 腈酸层增强了装置内的电荷转移。 我们的理论计算和电化学结果表明,芘 - 氮酰基乙酸的形成强制从石墨烯到SAM的直接电子转移,而添加Ni2 +阳离子和咪唑反转电荷转移方向,允许电子的原子控制 流量,这对于真正的工作设备至关重要。

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