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Donor/acceptor and adsorbate effects over transport properties of Graphene Armchair Nanoribbon/MoS2 device

机译:供体/受体和吸附物对石墨烯扶手纳米架/ MOS2装置的运输性能的影响

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Sensing properties and quasi conductivity of Graphene Armchair Nanoribbon/MoS heterostructure devices are investigated using Non Equilibrium Green's Function (NEGF) formalism. Both metallic and semiconducting Armchair Graphene Nanoribbon (A-GNR) are used as sensing medium, while two dimensional (2D) molybdenum disulfide (MoS) is used as contacts. A comparative study about sensing performance of NH adsorbed pristine-, defect-, doped GNR and unadsorbed GNR has been carried out. The non-linear spin dependent transport properties of such devices have been studied on the basis of doping with an atom of group III & V elements. The effects of applied gate voltage over sensing properties have been observed extensively. Also in this literature, the effects of metal contacts are discussed and a new device model has been proposed to increase sensing properties.
机译:使用非平衡绿色的功能(NegF)形式主义研究了石墨烯扶手椅纳米架/ MOS异质结构装置的感测性能和准电导率。金属和半导体扶手椅石墨烯纳米烯(A-GNR)都用作传感介质,而二维(2D)二硫化钼(MOS)用作触点。已经进行了关于NH吸附性原始,缺陷,掺杂GNR和未吸附GNR的感测性能的对比研究。已经基于III族和V元素的原子来研究这些装置的非线性自旋依赖性运输特性。已经广泛地观察到应用栅极电压过度感测性能的影响。同样在该文献中,讨论了金属触点的影响,并且已经提出了一种新的器件模型来增加感测性质。

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