• Journal of Semiconductors
  • Vol. 43, Issue 5, 052001 (2022)
Didi Zhao, Chenggong Zhang, Changwen Zhang, Weixiao Ji, Shengshi Li, and Peiji Wang
Author Affiliations
  • School of Physics and Technology, Spintronics Institute, University of Jinan, Jinan 250022, China
  • show less
    DOI: 10.1088/1674-4926/43/5/052001 Cite this Article
    Didi Zhao, Chenggong Zhang, Changwen Zhang, Weixiao Ji, Shengshi Li, Peiji Wang. Magnetic tuning in a novel half-metallic Ir2TeI2 monolayer[J]. Journal of Semiconductors, 2022, 43(5): 052001 Copy Citation Text show less
    References

    [1] B Huang, G Clark, E Navarro-Moratalla et al. Layer-dependent ferromagnetism in a van der Waals crystal down to the monolayer limit. Nature, 546, 270(2017).

    [2] C Gong, L Li, Z L Li et al. Discovery of intrinsic ferromagnetism in two-dimensional van der Waals crystals. Nature, 546, 265(2017).

    [3] Y J Deng, Y J Yu, Y C Song et al. Gate-tunable room-temperature ferromagnetism in two-dimensional Fe3GeTe2. Nature, 563, 94(2018).

    [4] M Bonilla, S Kolekar, Y J Ma et al. Strong room-temperature ferromagnetism in VSe2 monolayers on van der Waals substrates. Nat Nanotechnol, 13, 289(2018).

    [5] D O’Hara, T C Zhu, A H Trout et al. Room temperature intrinsic ferromagnetism in epitaxial manganese selenide films in the monolayer limit. Nano Lett, 18, 3125(2018).

    [6] S Zheng, C Huang, T Yu et al. High-temperature ferromagnetism in an Fe3P monolayer with a large magnetic anisotropy. J Phys Chem Lett, 10, 2733(2019).

    [7] J U Lee, S Lee, J H Ryoo et al. Ising-type magnetic ordering in atomically thin FePS3. Nano Lett, 16, 7433(2016).

    [8] N D Mermin, H Wagner. Absence of ferromagnetism or antiferromagnetism in one- or two-dimensional isotropic Heisenberg models. Phys Rev Lett, 17, 1133(1966).

    [9] J Stöhr, H C Siegmann. Polarized electrons and magnetism. Magnetism: From Fundamentals to Nanoscale Dynamics. Nanoscale Dynamics, 313(2006).

    [10] J L Lado, J Fernández-Rossier. On the origin of magnetic anisotropy in two dimensional CrI3. 2D Mater, 4, 035002(2017).

    [11] C S Xu, J S Feng, H J Xiang et al. Interplay between Kitaev interaction and single ion anisotropy in ferromagnetic CrI3 and CrGeTe3 monolayers. npj Comput Mater, 4, 57(2018).

    [12] X X Li, B J Dong, X D Sun et al. Perspectives on exfoliated two-dimensional spintronics. J Semicond, 40, 081508(2019).

    [13] X Wang, J Tang, X X Xia et al. Current-driven magnetization switching in a van der Waals ferromagnet Fe3GeTe2. Sci Adv, 5, eaaw8904(2019).

    [14] S Ikeda, K Miura, H Yamamoto et al. A perpendicular-anisotropy CoFeB–MgO magnetic tunnel junction. Nat Mater, 9, 721(2010).

    [15] B Dieny, M Chshiev. Perpendicular magnetic anisotropy at transition metal/oxide interfaces and applications. Rev Mod Phys, 89, 025008(2017).

    [16] F Katmis, V Lauter, F S Nogueira et al. A high-temperature ferromagnetic topological insulating phase by proximity coupling. Nature, 533, 513(2016).

    [17] L Liu, X Ren, J H Xie et al. Magnetic switches via electric field in BN nanoribbons. Appl Surf Sci, 480, 300(2019).

    [18] Z Wu, J Yu, S Yuan. Strain-tunable magnetic and electronic properties of monolayer CrI3. Phys Chem Chem Phys, 21, 7750(2019).

    [19] H Ohno, D Chiba, F Matsukura et al. Electric-field control of ferromagnetism. Nature, 408, 944(2000).

    [20] M Weisheit, S Fähler, A Marty et al. Electric field-induced modification of magnetism in thin-film ferromagnets. Science, 315, 349(2007).

    [21] Z R Wang, Z Hao, X J Wang et al. Cytokine storm biomarkers: A flexible and regenerative aptameric graphene–nafion biosensor for cytokine storm biomarker monitoring in undiluted biofluids toward wearable applications. Adv Funct Mater, 31, 2170026(2021).

    [22] Z R Wang, Z Hao, S F Yu et al. An ultraflexible and stretchable aptameric graphene nanosensor for biomarker detection and monitoring. Adv Funct Mater, 29, 1905202(2019).

    [23] Y P Wang, W X Ji, C W Zhang et al. Discovery of intrinsic quantum anomalous Hall effect in organic Mn-DCA lattice. Appl Phys Lett, 110, 233107(2017).

    [24] L Zhang, S F Zhang, W X Ji et al. Discovery of a novel spin-polarized nodal ring in a two-dimensional HK lattice. Nanoscale, 10, 20748(2018).

    [25] M H Zhang, X L Chen, W X Ji et al. Discovery of multiferroics with tunable magnetism in two-dimensional lead oxide. Appl Phys Lett, 116, 172105(2020).

    [26] C X Huang, J S Feng, F Wu et al. Toward intrinsic room-temperature ferromagnetism in two-dimensional semiconductors. J Am Chem Soc, 140, 11519(2018).

    [27] J Y You, Z Zhang, X J Dong et al. Two-dimensional magnetic semiconductors with room Curie temperatures. Phys Rev Research, 2, 013002(2020).

    [28] J X Yu, J Zang. Giant perpendicular magnetic anisotropy in Fe/III-V nitride thin films. Sci Adv, 4, eaar7814(2018).

    [29] S W Jiang, J Shan, K F Mak. Electric-field switching of two-dimensional van der Waals magnets. Nat Mater, 17, 406(2018).

    [30]

    [31] K S Novoselov. Nobel lecture: Graphene: Materials in the flatland. Rev Mod Phys, 83, 837(2011).

    [32] S W Yang, R C Peng, T Jiang et al. Non-volatile 180° magnetization reversal by an electric field in multiferroic heterostructures. Adv Mater, 26, 7091(2014).

    [33] H S Kum, H Lee, S Kim et al. Heterogeneous integration of single-crystalline complex-oxide membranes. Nature, 578, 75(2020).

    [34] L Caretta, E Rosenberg, F Büttner et al. Interfacial Dzyaloshinskii-Moriya interaction arising from rare-earth orbital magnetism in insulating magnetic oxides. Nat Commun, 11, 1090(2020).

    [35] Q R Cui, J H Liang, Z J Shao et al. Strain-tunable ferromagnetism and chiral spin textures in two-dimensional Janus chromium dichalcogenides. Phys Rev B, 102, 094425(2020).

    [36] X J Dong, J Y You, B Gu et al. Strain-induced room-temperature ferromagnetic semiconductors with large anomalous hall conductivity in two-dimensional Cr2Ge2Se6. Phys Rev Appl, 12, 014020(2019).

    [37] Y Saito, T Nojima, Y Iwasa. Highly crystalline 2D superconductors. Nat Rev Mater, 2, 16094(2017).

    [38] S W Jiang, L Z Li, Z F Wang et al. Controlling magnetism in 2D CrI3 by electrostatic doping. Nat Nanotechnol, 13, 549(2018).

    [39] M Abdollahi, M Bagheri Tagani. Tuning intrinsic ferromagnetic and anisotropic properties of the Janus VSeS monolayer. J Mater Chem C, 8, 13286(2020).

    [40] S J Zhang, C W Zhang, S F Zhang et al. Intrinsic Dirac half-metal and quantum anomalous Hall phase in a hexagonal metal-oxide lattice. Phys Rev B, 96, 205433(2017).

    [41] H X Yang, A D Vu, A Hallal et al. Anatomy and giant enhancement of the perpendicular magnetic anisotropy of cobalt– graphene heterostructures. Nano Lett, 16, 145(2016).

    [42] A N Ma, P J Wang, C W Zhang. Intrinsic ferromagnetism with high temperature, strong anisotropy and controllable magnetization in the CrX (X = P, As) monolayer. Nanoscale, 12, 5464(2020).

    [43] A Bafekry, M Neek-Amal, F M Peeters. Two-dimensional graphitic carbon nitrides: Strain-tunable ferromagnetic ordering. Phys Rev B, 101, 165407(2020).

    [44] G Kresse, J Furthmüller. Efficiency of ab-initio total energy calculations for metals and semiconductors using a plane-wave basis set. Comput Mater Sci, 6, 15(1996).

    [45] G Kresse, J Furthmüller. Efficient iterative schemes for ab initio total-energy calculations using a plane-wave basis set. Phys Rev B, 54, 11169(1996).

    [46] J P Perdew, K Burke, M Ernzerhof. Generalized gradient approximation made simple. Phys Rev Lett, 77, 3865(1996).

    [47] L Wang, T Maxisch, G Ceder. Oxidation energies of transition metal oxides within the GGA+U framework. Phys Rev B, 73, 195107(2006).

    [48] A V Krukau, O A Vydrov, A F Izmaylov et al. Influence of the exchange screening parameter on the performance of screened hybrid functionals. J Chem Phys, 125, 224106(2006).

    [49] P E Blöchl. Projector augmented-wave method. Phys Rev B, 50, 17953(1994).

    [50] G Kresse, D Joubert. From ultrasoft pseudopotentials to the projector augmented-wave method. Phys Rev B, 59, 1758(1999).

    [51] A Togo, F Oba, I Tanaka. First-principles calculations of the ferroelastic transition between rutile-type and CaCl2-typeSiO2 at high pressures. Phys Rev B, 78, 134106(2008).

    [52] J Liu, Q Sun, Y Kawazoe et al. Exfoliating biocompatible ferromagnetic Cr-trihalide monolayers. Phys Chem Chem Phys, 18, 8777(2016).

    [53] M Ryazanov, A Simon, H Mattausch. La2TeI2: a new layered telluride iodide with unusual electrical properties. Inorg Chem, 45, 10728(2006).

    [54] B Jayasena, S Subbiah. A novel mechanical cleavage method for synthesizing few-layer graphenes. Nanoscale Res Lett, 6, 95(2011).

    [55] V Nicolosi, M Chhowalla, M G Kanatzidis et al. Liquid exfoliation of layered materials. Science, 340, 1226419(2013).

    [56] J J He, P B Lyu, P Nachtigall. New two-dimensional Mn-based MXenes with room-temperature ferromagnetism and half-metallicity. J Mater Chem C, 4, 11143(2016).

    [57] G Gao, G Ding, J Li et al. Monolayer MXenes: Promising half-metals and spin gapless semiconductors. Nanoscale, 8, 8986(2016).

    [58] L Hu, X J Wu, J L Yang. Mn2C monolayer: A 2D antiferromagnetic metal with high Néel temperature and large spin–orbit coupling. Nanoscale, 8, 12939(2016).

    [59]

    [60] E Cadelano, P L Palla, S Giordano et al. Elastic properties of hydrogenated graphene. Phys Rev B, 82, 235414(2010).

    [61] Y Ding, Y L Wang. Density functional theory study of the silicene-like SiX and XSi3 (X = B, C, N, Al, P) honeycomb lattices: The various buckled structures and versatile electronic properties. J Phys Chem C, 117, 18266(2013).

    [62] R C Andrew, R E Mapasha, A M Ukpong et al. Mechanical properties of graphene and boronitrene. Phys Rev B, 85, 125428(2012).

    [63] Z B Gao, X Dong, N B Li et al. Novel two-dimensional silicon dioxide with in-plane negative poisson's ratio. Nano Lett, 17, 772(2017).

    [64] A Weiss. John B. Goodenough: Magnetism and the chemical bond. Berichte Der Bunsengesellschaft Für Physikalische Chemie, 68, 996(1964).

    [65] A Hajalilou, M Hashim, H Mohamed Kamari. Structure and magnetic properties of Ni0.64Zn0.36Fe2O4 nanoparticles synthesized by high-energy milling and subsequent heat treatment. J Mater Sci Mater Electron, 26, 1709(2015).

    [66] S J Gong, C G Duan, Z Q Zhu et al. Manipulation of magnetic anisotropy of Fe/graphene by charge injection. Appl Phys Lett, 100, 122410(2012).

    [67] H Y Lv, W J Lu, D F Shao et al. Strain-controlled switch between ferromagnetism and antiferromagnetism in 1T–CrX2 (X = Se, Te) monolayers. Phys Rev B, 92, 214419(2015).

    Didi Zhao, Chenggong Zhang, Changwen Zhang, Weixiao Ji, Shengshi Li, Peiji Wang. Magnetic tuning in a novel half-metallic Ir2TeI2 monolayer[J]. Journal of Semiconductors, 2022, 43(5): 052001
    Download Citation