Materials Sciences and Applications

Materials Sciences and Applications

ISSN Print: 2153-117X
ISSN Online: 2153-1188
www.scirp.org/journal/msa
E-mail: msa@scirp.org
"Enhanced Thermoelectric Properties of BiCoO3 by Nickel Substitution"
written by T. Ramachandran, N. E. Rajeevan, P. P. Pradyumnan,
published by Materials Sciences and Applications, Vol.4 No.12, 2013
has been cited by the following article(s):
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[3] Synthesis of Novel MOF-5 Based BiCoO3 Photocatalyst for the Treatment of Textile Wastewater
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[4] Effectiveness of I-doped ZnO as polyvalent material for both anti-bacterial and photocatalytic treatments
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[8] Tuned physical characteristics of PbSe binary compound: a DFT study.
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[9] Spin-based transport properties of Cs 2 WX 6 (X= Cl, Br) ferromagnets for spin-injected thermoelectric current
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[10] First principle study of optoelectronic and thermoelectric properties of magnesium based MgX2O4 (X= Sb, Bi) spinels
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[11] Half Metallic Ferromagnetism and Transport Properties of Zinc Chalcogenides ZnX2Se4 (X = Ti, V, Cr) for Spintronic Applications
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[12] Ab-initio computations of CaV2S4 and CaMn2S4 spinels for spintronics and energy storage system applications
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[13] Ab initio study for the structural, electronic, magnetic, optical, and thermoelectric properties of K2OsX6 (X = Cl, Br) compounds
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[14] Exploration of magnesium based MgX2O4 (X= Rh, Bi) spinels for thermoelectric applications using density functional theory (DFT)
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[15] The significance of anti‐fluorite Cs2NbI6 via its structural, electronic, magnetic, optical and thermoelectric properties
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[16] Optoelectronic and thermoelectric behavior of XIn2Te4 (X= Mg, Zn and Cd) for energy harvesting application; DFT approach
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[17] (S, C) co-doped ZnO properties and enhanced photocatalytic activity
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[18] Cobalt doped SnO2: A new material for thermoelectric application
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[19] Systematic study of the elastic, optoelectronic, and thermoelectric behavior of MRh2O4 (M = Zn, Cd) based on first principles calculations
Journal of Physics and Chemistry of Solids, 2018
[20] Magnetism, optical, and thermoelectric response of CdFe2O4 by using DFT scheme
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[21] The First-Principle Study of the Electronic Structure, Ferromagnetic and Thermoelectric Properties of Spinel Alloy FeAl2O4 Using mBJ Functional Approach
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[22] Ab-initio study of electronic, magnetic and thermoelectric behaviors of LiV2O4 and LiCr2O4 using modified Becke-Johson (mBJ) potential
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[23] Enhanced thermoelectric property of oxygen deficient nickel doped SnO2 for high temperature application
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[24] The Theoretical Investigation of Electronic, Magnetic, and Thermoelectric Behavior of LiZ2O4 (Z = Mn, Fe, Co, and Ni) by Modified Becke and Johnson Approach
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[25] Study of electronic, magnetic and thermoelectric properties of AV2O4 (A= Zn, Cd, Hg) by using DFT approach
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[26] Low-cost and high-performance electrode materials based on BiCoO3 microspheres
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[27] Structural, optical and transport properties of SxZnO
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[28] Low-cost and high-performance electrode materials based on BiCoO 3 microspheres
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[29] Dopage anionique d'oxydes simples, et leurs applications aux énergies renouvelables
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[30] Resistive switching of multiferroic BiCoO 3 nanoflowers
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[31] Resistive switching of multiferroic BiCoO3 nanoflowers
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[32] Visible-light controlled ferroelectricity and magnetoelectric coupling in multiferroic BiCoO 3 nanoribbons
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[33] Reversible resistive switching behaviors of multiferroic single-crystalline BiCoO3 microribbons
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[34] Reversible resistive switching behaviors of multiferroic single-crystalline BiCoO 3 microribbons
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