Bent zigzag graphene nanoribbons for spintronic applications

被引:0
作者
Farghadan, Rouhollah [1 ]
机构
[1] Univ Kashan, Dept Phys, Kashan 8731753153, Iran
关键词
spintronic; bending nanoribbon; thermoelectric; zigzag graphene nanoribbon; CONDUCTANCE; MAGNETISM;
D O I
10.1088/1402-4896/ad9a0e
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
We investigate a spintronic device utilizing bent zigzag graphene nanoribbons (ZGNRs) to explore their spin-dependent electronic and transport properties. Employing a mean-field Hubbard model and the Landauer-B & uuml;ttiker formalism, we examine the effects of curvature on a large-scale bent ZGNR, revealing a spin-semiconducting phase in the antiferromagnetic ground state. The device comprises a circularly curved nanoribbon connected to two straight ZGNRs, forming a two-terminal, stretchable system. Our findings demonstrate that the spin energy gap and spin-splitting effects in bent ZGNRs are highly tunable via curvature parameters-total rotation, radius, and width. Even minimal curvature induces significant spin-dependent behavior and spin Seebeck coefficient (SSC), resulting in full spin polarization in both the density of states and the transmission coefficient. The degree of spin polarization increases with the bending parameter, leading to enhanced spin-polarized current and a substantial SSC. These results suggest that bent ZGNRs are promising for advancing spintronic applications, particularly in flexible device technologies.
引用
收藏
页数:8
相关论文
共 50 条
  • [41] Spin-dependent band-gap driven by nitrogen and oxygen functional groups in zigzag graphene nanoribbons
    Lopez-Urias, Florentino
    Fajardo-Diaz, Juan L.
    Cortes-Lopez, Alejandro J.
    Rodriguez-Corvera, Cristina L.
    Jimenez-Ramirez, Luis E.
    Munoz-Sandoval, Emilio
    APPLIED SURFACE SCIENCE, 2020, 521
  • [42] Spin-dependent transport induced by magnetization in zigzag graphene nanoribbons coupled to one-dimensional leads
    Zhao Hua
    Zhang Xiao-Wei
    Cai Tuo
    Sang Tian
    Liu Xiao-Chun
    Liu Fang
    CHINESE PHYSICS B, 2012, 21 (01)
  • [43] Magnetoconductance of graphene nanoribbons
    Li, T. S.
    Huang, Y. C.
    Chang, S. C.
    Chang, C. P.
    Lin, M. F.
    PHILOSOPHICAL MAGAZINE, 2009, 89 (08) : 697 - 709
  • [44] Graphene-based half-metal and spin-semiconductor for spintronic applications
    Qi, Jingshan
    Chen, Xiaofang
    Hu, Kaige
    Feng, Ji
    JOURNAL OF PHYSICS-CONDENSED MATTER, 2016, 28 (12)
  • [45] Vacuum barrier induced large spin polarization, giant magnetoresistance, and pure spin photocurrent in ferromagnetic zigzag graphene nanoribbons
    Song, Lingling
    Liu, Lu
    Wei, Canglong
    Zhang, Yan
    Zhao, Han
    Ye, Runlong
    Zheng, Xiaohong
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2022, 55 (45)
  • [46] Electrical properties and spintronic application of carbon phosphide nanoribbons with edge functionalization
    Cao, Liemao
    Li, Xiaobo
    Li, Yun
    Zhou, Guanghui
    JOURNAL OF MATERIALS CHEMISTRY C, 2020, 8 (27) : 9313 - 9321
  • [47] Influence of edge passivation on the transport properties of the zigzag phosphorene nanoribbons
    Shi, H. L.
    Song, M. R.
    Jiang, Z. T.
    Ren, Y. H.
    Han, Q. Z.
    PHYSICS LETTERS A, 2020, 384 (25)
  • [48] Andreev reflection in graphene nanoribbons
    Rainis, Diego
    Taddei, Fabio
    Dolcini, Fabrizio
    Polini, Marco
    Fazio, Rosario
    PHYSICAL REVIEW B, 2009, 79 (11)
  • [49] Charge transport in topological graphene nanoribbons and nanoribbon heterostructures
    Mangnus, Mark J. J.
    Fischer, Felix R.
    Crommie, Michael F.
    Swart, Ingmar
    Jacobse, Peter H.
    PHYSICAL REVIEW B, 2022, 105 (11)
  • [50] Addressing Electron Spins Embedded in Metallic Graphene Nanoribbons
    Friedrich, Niklas
    Menchon, Rodrigo E.
    Pozo, Iago
    Hieulle, Jeremy
    Vegliante, Alessio
    Li, Jingcheng
    Sanchez-Portal, Daniel
    Pena, Diego
    Garcia-Lekue, Aran
    Ignacio Pascual, Jose
    ACS NANO, 2022, 16 (09) : 14819 - 14826