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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Electronic structures, field effect transistor and bipolar field-effect spin filtering behaviors of functionalized hexagonal graphene nanoflakes
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Electronic structures, field effect transistor and bipolar field-effect spin filtering behaviors of functionalized hexagonal graphene nanoflakes

机译:功能化六角形石墨烯纳米薄片的电子结构,场效应晶体管和双极场效应自旋滤波行为

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摘要

We report first-principles calculations on the electronic properties, spin magnetism, and potential applications of the functionalized hexagonal armchair graphene nanoflakes (GNFs). It is found that the gap of the GNF changes in an obvious oscillating manner with the size of its hexagonal defect (antidot), and when the antidot is large enough, it will lead to a prominent splitting of the α-spin and p-spin orbitals and the intriguing property of bipolar magnetic semiconductors for the GNF. And also shown is that the electronic structures of the GNF can be tuned from semiconducting to metallic properties by different edge modifications. More importantly, based on the suitable hexagonal defective GNFs, we design a field effect transistor (FET) and a bipolar field-effect spin-filtering (BFESF) device, and find that they all exhibit extremely high performances. For this FET, its ON/OFF ratio reaches ~10~5, subthreshold swing ~90meV per decade, and the transconductance ~10~3 S/m, and for this BFESF device, the spin polarization nearly reaches 100% with different spin directions only by altering signs of gate voltages.
机译:我们报告电子功能,自旋磁性和功能化六角扶手椅石墨烯纳米薄片(GNFs)的潜在应用的第一性原理计算。发现GNF的间隙随其六角形缺陷(解毒剂)的大小以明显的振荡方式变化,并且当解毒剂足够大时,它将导致α自旋和p自旋的明显分裂。双极磁性半导体的轨道和迷人特性。并且还表明,可以通过不同的边缘修改将GNF的电子结构从半导体特性调整为金属特性。更重要的是,基于合适的六角形缺陷GNF,我们设计了场效应晶体管(FET)和双极场效应自旋滤波(BFESF)器件,发现它们均具有极高的性能。对于这种FET,其开/关比达到〜10〜5,每十倍频程的亚阈值摆幅约为90meV,跨导约为10〜3 S / m,对于这种BFESF器件,在不同的自旋方向上,自旋极化几乎达到100%仅通过改变栅极电压的符号。

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