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DNA-nucleobases: Gate Dielectric/Passivation Layer for Flexible GFET-based Sensor Applications

机译:DNA-核碱基:基于柔性GFET的传感器应用的栅极介质/钝化层

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The main goal of this research was to maintain the bulk charge carrier mobility of graphene, after deposition of the gate dielectric layer used for making transistor devices. The approach was introducing a thin film of deoxyribonucleic acid (DNA) nucleobase purine guanine, deposited by physical vapor deposition (PVD), onto layers of graphene that were transferred onto various flexible substrates. Several test platforms were fabricated with guanine as a standalone gate dielectric, as the control, and guanine as a passivation layer between the graphene and PMMA. It was found that the bulk charge carrier mobility of graphene was best maintained and most stable using guanine as a passivation layer between the graphene and PMMA. Other transport properties, such as charge carrier concentration, conductivity type and electrical resistivity were investigated as well. This is an important first step to realizing high performance graphene-based transistors that have potential use in bio and environmental sensors, computer-processing and electronics.
机译:该研究的主要目的是在用于制造晶体管器件的栅极介电层沉积之后,保持石墨烯的批量电荷载流子迁移率。该方法在将通过物理气相沉积(PVD)沉积到各种柔性基材上的石墨烯层上沉积的脱氧核糖核酸(DNA)核酸核苷酸嘌呤菌薄膜薄膜。几种测试平台用鸟嘌呤作为独立栅极电介质制造,作为控制,以及石墨烯和PMMA之间的钝化层。发现石墨烯的批量电荷载流子迁移率最佳地维持,并且使用鸟嘌呤作为石墨烯和PMMA之间的钝化层保持最稳定的。还研究了其他运输性能,例如电荷载流量,导电类型和电阻率。这是实现具有在生物和环境传感器的高性能石墨烯的晶体管,计算机处理和电子设备具有潜在使用的重要第一步。

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