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Strong Current-Polarization and Negative Differential Resistance in FeN3-Embedded Armchair Graphene Nanoribbons

FeN3掺杂扶手椅型石墨烯纳米条带的极强电流极化和微分负导效应(英文)
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摘要 Motivated by the recent advances of transition-metal-nitrogen-carbon (TM-N-C) materials in catalysis, we investigate the electronic structure and transport properties of FeN3-embedded armchair and zigzag graphene nanoribbons (FeN3@AGNRs, FeN3@ZGNRs) with different widths. The first-principles results indicate that the FeN3 induces significant changes on the band structures of both ZGNRs and AGNRs, making the resultant systems quite different from the pristine ones and own room-temperature stable ferromagnetic (FM) ground states. While only FeN3@AGNRs possess a significant spin-dependent negative differential resistance (NDR) and a striking current polarization (nearly 100%) behaviors, due to that FeN3 introduces two isolated spin-down states, which contribute current with different performances when they couple with different frontier orbits. It is suggested that by embedding FeN3 complexes, AGNRs can be used to build spin devices in spintronics.
作者 Ying-chao Wu Jia-rui Rao Xiao-fei Li 吴颖超;饶家睿;李小飞(电子科技大学光电科学与工程学院)
出处 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2018年第6期756-760,733,共6页 化学物理学报(英文)
基金 supported by the National Natural Science Foundation of China(No.21643011) the Fundamental Research Foundations for the Central Universities(No.ZYGX2016J067)
关键词 Transition-metal-nitrogen-carbon Current polarization Electronic transport Non-equilibrium Green's function TM-N-C 电流极化 电子输运 非平衡格林函数
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