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Tuning graphene transistors through ad hoc electrostatics induced by a nanometer-thick molecular underlayer

机译:调优石墨烯晶体管通过特设静电学诱导纳米厚的分子衬层

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摘要

We report on the modulation of the electrical properties of graphene-based transistors that mirror the properties of a few nanometers thick layer made of dipolar molecules sandwiched in between the 2D material and the SiO2 dielectric substrate. The chemical composition of the films of quinonemonoimine zwitterion molecules adsorbed onto SiO2 has been explored by means of X-ray photoemission and mass spectroscopy. Graphene-based devices are then fabricated by transferring the 2D material onto the molecular film, followed by the deposition of top source-drain electrodes. The degree of supramolecular order in disordered films of dipolar molecules was found to be partially improved as a result of the electric field at low temperatures, as revealed by the emergence of hysteresis in the transfer curves of the transistors. The use of molecules from the same family, which are suitably designed to interact with the dielectric surface, results in the disappearance of the hysteresis. DFT calculations confirm that the dressing of the molecules by an external electric field exhibits multiple minimal energy landscapes that explain the thermally stabilized capacitive coupling observed. This study demonstrates that the design and exploitation of ad hoc molecules as an interlayer between a dielectric substrate and graphene represents a powerful tool for tuning the electrical properties of the 2D material. Conversely, graphene can be used as an indicator of the stability of molecular layers, by providing insight into the energetics of ordering of dipolar molecules under the effect of electrical gating.
机译:我们报告的调制电石墨烯晶体管的特性镜子几纳米厚的属性层由偶极分子夹在中间2 d材料和二氧化硅介质衬底。quinonemonoimine的两性离子分子吸附在二氧化硅已经探索了通过x射线光电发射和质谱分析。石墨烯器件然后捏造的将二维材料在分子电影,紧随其后的是顶级的沉积source-drain电极。超分子秩序无序的电影偶极分子被发现部分改进的结果在低电场温度,如出现了滞后的转移曲线晶体管。家庭,适当进行交互而设计的在介质表面,结果滞后的消失。确认分子的穿的外部电场展品多个最小能源景观解释热稳定的电容耦合。研究表明,设计和特别开发分子作为夹层介质衬底和石墨烯之间代表一个调整的有力工具电特性的二维材料。相反,石墨烯可以作为指标稳定的分子层,提供洞察订购的能量偶极分子的影响电气控制。

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