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首页> 外文期刊>Journal of nanomaterials >Unified Drain Current Model of Armchair Graphene Nanoribbons with Uniaxial Strain and Quantum Effect
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Unified Drain Current Model of Armchair Graphene Nanoribbons with Uniaxial Strain and Quantum Effect

机译:单轴应变和量子效应的扶手椅石墨烯纳米带统一漏电流模型

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A unified current-voltageI-Vmodel of uniaxial strained armchair graphene nanoribbons (AGNRs) incorporating quantum confinement effects is presented in this paper. TheI-Vmodel is enhanced by integrating both linear and saturation regions into a unified and precise model of AGNRs. The derivation originates from energy dispersion throughout the entire Brillouin zone of uniaxial strained AGNRs based on the tight-binding approximation. Our results reveal the modification of the energy band gap, carrier density, and drain current upon strain. The effects of quantum confinement were investigated in terms of the quantum capacitance calculated from the broadening density of states. The results show that quantum effect is greatly dependent on the magnitude of applied strain, gate voltage, channel length, and oxide thickness. The discrepancies between the classical calculation and quantum calculation were also measured and it has been found to be as high as 19% drive current loss due to the quantum confinement. Our finding which is in good agreement with the published data provides significant insight into the device performance of uniaxial strained AGNRs in nanoelectronic applications.
机译:本文提出了具有量子约束效应的单轴应变扶手椅石墨烯纳米带(AGNR)的统一电流-电压模型。通过将线性区域和饱和区域集成到统一且精确的AGNR模型中,可以增强I-V模型。该推导源自紧密结合近似下单轴应变AGNRs整个布里渊区的能量分散。我们的结果揭示了能带隙,载流子密度和应变时的漏极电流的变化。根据从扩展态密度计算出的量子电容,研究了量子约束的影响。结果表明,量子效应在很大程度上取决于施加的应变,栅极电压,沟道长度和氧化物厚度。还测量了经典计算和量子计算之间的差异,并且由于量子限制,发现它高达19%的驱动电流损耗。我们的发现与已发表的数据非常吻合,从而为单轴应变AGNRs在纳米电子应用中的器件性能提供了重要的见识。

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