Ab-initio and Monte Carlo studies of the structural, electronic and magnetic properties of V-doped ZnO compound
暂无分享,去创建一个
[1] R. Gebauer,et al. Ab-initio, Monte Carlo and experimental investigation on structural, electronic and magnetic properties of Zn1-Ni O nanoparticles prepared via sol-gel method , 2021 .
[2] Eric Bousquet,et al. TB2J: A python package for computing magnetic interaction parameters , 2020, Comput. Phys. Commun..
[3] F. Marken,et al. Direct and indirect light energy harvesting with films of ambiently deposited ZnO nanoparticles , 2020 .
[4] N. Gnanasundaram,et al. Preparation and characterization of ZnO, MgO and ZnO–MgO hybrid nanomaterials using green chemistry approach , 2020, Results in Materials.
[5] M. Chakrabarti,et al. Ferromagnetic property of copper doped ZnO: A first-principles study , 2020, Computational Condensed Matter.
[6] Nicola Marzari,et al. Wannier90 as a community code: new features and applications , 2019, Journal of physics. Condensed matter : an Institute of Physics journal.
[7] Junlu Sun,et al. Achieving high-resolution pressure mapping via flexible GaN/ ZnO nanowire LEDs array by piezo-phototronic effect , 2019, Nano Energy.
[8] A. González-García,et al. Electronic structure and magnetic order in Cu Zn(1−)O: A study GGA and GGA + U , 2019, Physica B: Condensed Matter.
[9] Zhihua Zhang,et al. Magnetic properties of diluted magnetic semiconductors Li(Zn,TM)N with decoupled charge and spin doping (TM: V, Cr, Mn, Fe, Co and Ni) , 2019, Computational Materials Science.
[10] M. Kerouad,et al. Phase diagrams and magnetic properties of the mixed spin-1 and spin-3/2 Ising ferromagnetic thin film: Monte Carlo treatment , 2019, Chinese Physics B.
[11] K. Chae,et al. Electronic and magnetic structure investigation of vanadium doped ZnO nanostructure , 2018, Vacuum.
[12] Q. Hou,et al. Effect of Ce doping on the magnetic and optical properties of ZnO by the first principle , 2018, Journal of Magnetism and Magnetic Materials.
[13] Qu Ling-Feng,et al. Effects of Eu doping and O vacancy on the magnetic and optical properties of ZnO , 2018 .
[14] Ming Lei,et al. Durable and Efficient Hollow Porous Oxide Spinel Microspheres for Oxygen Reduction , 2017 .
[15] Stefano de Gironcoli,et al. Advanced capabilities for materials modelling with Quantum ESPRESSO , 2017, Journal of physics. Condensed matter : an Institute of Physics journal.
[16] R. Jha,et al. Analysis of structural, optical and magnetic properties of Fe/Co co-doped ZnO nanocrystals , 2017 .
[17] Jun Liu,et al. Defect locating: One-step to monodispersed CoFe2O4/rGO nanoparticles for oxygen reduction and oxygen evolution , 2017 .
[18] M. Kerouad,et al. A Monte Carlo study of the Blume–Capel thin film in the presence of a random crystal field , 2016 .
[19] Rabia Farooq,et al. First-principles calculation of electronic and optical properties of graphene like ZnO (G-ZnO) , 2016 .
[20] A. K. Hafiz,et al. Synthesis and Characterization of Vanadium Doped Zinc Oxide Thick Film for Chemical Sensor Application , 2015 .
[21] S. Ravi,et al. Ferromagnetism in Mn doped copper oxide nanoflake like structures with high Neel temperature , 2015 .
[22] Weihua Tang,et al. Room temperature ferromagnetism in (Ga1−xMnx)2O3 epitaxial thin films , 2015 .
[23] S. V. Streltsov,et al. Calculation of exchange constants of the Heisenberg model in plane-wave-based methods using the Green's function approach , 2014, 1411.4169.
[24] A. Mohamed,et al. Sunlight photocatalytic activity enhancement and mechanism of novel europium-doped ZnO hierarchical micro/nanospheres for degradation of phenol , 2014 .
[25] R. Saravanan,et al. Structure of Vanadium-Doped Zinc Oxide, Zn1–X V x O , 2014 .
[26] A. Tanaka,et al. Electronic excitations of a magnetic impurity state in the diluted magnetic semiconductor (Ga,Mn)As. , 2013, Physical review letters.
[27] Yun Zeng,et al. First-principles study on La-doped ZnO used as transparent electrode for optoelectronic device , 2012 .
[28] E. Bacaksız,et al. Structural, optical and magnetic properties of Cr doped ZnO microrods prepared by spray pyrolysis method , 2011 .
[29] F Mittendorfer,et al. Accurate surface and adsorption energies from many-body perturbation theory. , 2010, Nature materials.
[30] C. Stampfl,et al. Codoping of aluminum and gallium with nitrogen in ZnO: A comparative first-principles investigation , 2009 .
[31] Stefano de Gironcoli,et al. QUANTUM ESPRESSO: a modular and open-source software project for quantum simulations of materials , 2009, Journal of physics. Condensed matter : an Institute of Physics journal.
[32] Chun-Hua Yan,et al. Efficient Energy Transfer in Monodisperse Eu-Doped ZnO Nanocrystals Synthesized from Metal Acetylacetonates in High-Boiling Solvents , 2008 .
[33] I. Turek,et al. Magnetic properties and disorder effects in diluted magnetic semiconductors , 2005 .
[34] Ashutosh Tiwari,et al. Epitaxial growth and properties of Zn1−xVxO diluted magnetic semiconductor thin films , 2005 .
[35] Parmanand Sharma,et al. First principles based design and experimental evidence for a ZnO-based ferromagnet at room temperature. , 2005, Physical review letters.
[36] J. Sakai,et al. Magnetism in V-doped ZnO thin films , 2005, Journal of physics. Condensed matter : an Institute of Physics journal.
[37] I. Turek,et al. Magnetic percolation in diluted magnetic semiconductors. , 2004, Physical review letters.
[38] Mingfang Yang,et al. Room-temperature ferromagnetism in well-aligned Zn1−xCoxO nanorods , 2004 .
[39] J. Narayan,et al. Zn0.9Co0.1O-based diluted magnetic semiconducting thin films , 2004 .
[40] I. Turek,et al. Exchange interactions in III-V and group-IV diluted magnetic semiconductors , 2004 .
[41] Kee-Joo Chang,et al. Ferromagnetic versus antiferromagnetic interaction in Co-doped ZnO , 2004 .
[42] N. Spaldin. Search for ferromagnetism in transition-metal-doped piezoelectric ZnO , 2003, cond-mat/0306477.
[43] Min‐Sik Park,et al. Ferromagnetism in ZnO codoped with transition metals: Zn 1 − x ( FeCo ) x O and Zn 1 − x ( FeCu ) x O , 2003 .
[44] Nicola A. Spaldin,et al. Magnetism in polycrystalline cobalt-substituted zinc oxide , 2003 .
[45] Parmanand Sharma,et al. Ferromagnetism above room temperature in bulk and transparent thin films of Mn-doped ZnO , 2003, Nature materials.
[46] R. M. Frazier,et al. Ferromagnetism in Mn- and Co-implanted ZnO nanorods , 2003, 2003 Third IEEE Conference on Nanotechnology, 2003. IEEE-NANO 2003..
[47] O. Eriksson,et al. Magnetic and electronic structure of (Ga1-xMnx)As , 2003 .
[48] B. Raveau,et al. Laser ablation of Co:ZnO films deposited from Zn and Co metal targets on (0001) Al2O3 substrates , 2003, cond-mat/0304243.
[49] Yu-Jun Zhao,et al. Ruderman-Kittel-Kasuya-Yosida-like ferromagnetism in MnxGe1-x. , 2003, Physical review letters.
[50] Se-Young Jeong,et al. Study of diluted magnetic semiconductor: Co-doped ZnO , 2002 .
[51] Tomoji Kawai,et al. Magnetic and electric properties of vanadium doped ZnO films , 2001 .
[52] T. Sekiguchi,et al. Scanning tunnelling spectroscopy characterization of ZnO single crystals , 2001 .
[53] N. Marzari,et al. Maximally localized Wannier functions for entangled energy bands , 2001, cond-mat/0108084.
[54] Hiroshi Katayama-Yoshida,et al. Material Design for Transparent Ferromagnets with ZnO-Based Magnetic Semiconductors , 2000 .
[55] H. Ohno,et al. Zener model description of ferromagnetism in zinc-blende magnetic semiconductors , 2000, Science.
[56] Burke,et al. Generalized Gradient Approximation Made Simple. , 1996, Physical review letters.
[57] Blöchl,et al. Projector augmented-wave method. , 1994, Physical review. B, Condensed matter.
[58] H. Monkhorst,et al. SPECIAL POINTS FOR BRILLOUIN-ZONE INTEGRATIONS , 1976 .