Multilayer stack structural designing of titania and zinc white using atomic layer deposition (ALD) technique and study of thermally governed dielectric dispersion and conduction under alternating electric fields
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Z. Erdélyi | S. Fouad | N. Mehta | E. Baradács | H. Atyia | B. Parditka | S. Pal
[1] N. Hegab,et al. The ac conduction mechanism and dielectric relaxation behavior of amorphous Te81Ge15Bi4 chalcogenide glass thin films , 2022, Journal of Materials Science: Materials in Electronics.
[2] K. Cao,et al. Advances in Atomic Layer Deposition , 2022, Nanomanufacturing and Metrology.
[3] P. Prabukanthan,et al. Physicochemical and Electrocatalytic Performance of Chromium doped Iron Pyrite Thin Films , 2022, Physics and Chemistry of Solid State.
[4] T. Jen,et al. Review of atomic layer deposition process, application and modeling tools , 2022, Materials Today: Proceedings.
[5] Tribology and Characterization of Surface Coatings , 2022 .
[6] Neeraj Mehta,et al. Overview of Coating Deposition Techniques , 2022, Tribology and Characterization of Surface Coatings.
[7] Katharina C. L. Bauerfeind,et al. Metal Substitution in Rutile TiO2: Segregation Energy and Conductivity , 2021, Journal of Electronic Materials.
[8] Z. Erdélyi,et al. ALD of TiO2/ZnO mutilayers towards the understanding of optical properties and polarizability , 2021 .
[9] S. Khorram,et al. Treatment of the ZnO and TiO2 Thin Films by Electric Field in Plasma Sheath to Improve the Metal-Dye Electronic Coupling in Dye-Sensitized Solar Cells , 2021 .
[10] M. Anuradha,et al. Optical, morphological, electrical properties of ZnO-TiO2-SnO2/CeO2 semiconducting ternary nanocomposite , 2021 .
[11] David-Wei Zhang,et al. Fabrication of 1D Te/2D ReS2 Mixed-Dimensional van der Waals p-n Heterojunction for High-Performance Phototransistor. , 2021, ACS nano.
[12] P. Ajayan,et al. Emerging 2D metal oxides and their applications , 2021 .
[13] Vipin Kumar,et al. A review on ZnO: Fundamental properties and applications , 2020 .
[14] Jamal M. Rzaij,et al. Review on: TiO2 Thin Film as a Metal Oxide Gas Sensor , 2020 .
[15] Z. Erdélyi,et al. Investigation of dispersion parameters, dielectric properties and opto–electrical parameters of ZnO thin film grown by ALD , 2020, Optik.
[16] Yijing Wang,et al. Metal oxide-based supercapacitors: progress and prospectives , 2019, Nanoscale advances.
[17] R. Senthil,et al. A simple, economical, and quick electrochemical deposition of rare-earth metal ion–doped ZnSe/FeS2 double-layer thin films with enhanced photoelectrochemical performance , 2019, Ionics.
[18] Hongliang Lu,et al. Investigation of growth characteristics, compositions, and properties of atomic layer deposited amorphous Zn-doped Ga2O3 films , 2019, Applied Surface Science.
[19] A. Bahari,et al. Studying of SiO2/capron nanocomposite as a gate dielectric film for improved threshold voltage , 2019, Applied Physics A.
[20] D. K. Dwivedi,et al. Study of dielectric relaxation and thermally activated a.c. conduction in multicomponent Ge10−xSe60Te30Inx (0 ≤ x ≤ 6) chalcogenide glasses using CBH model , 2019, Results in Physics.
[21] Amit Kumar,et al. Universality of Meyer-Neldel Compensation rule (MNCR): Case study of thermally assisted a.c. conduction after laser irradiation , 2018, Journal of Physics and Chemistry of Solids.
[22] S. Fouad,et al. Dielectric relaxation and thermally activated a.c. conduction in (PVDF)/(rGO) nano-composites: role of rGO over different fillers , 2018, Journal of Materials Science: Materials in Electronics.
[23] S. Ghasemi,et al. Synthesis and Characterization of Cross-Linked Nanocomposite as a Gate Dielectric for p-Type Silicon Field-Effect Transistor , 2018, Journal of Electronic Materials.
[24] I. Ferguson,et al. Metal oxides for thermoelectric power generation and beyond , 2018, Advanced Composites and Hybrid Materials.
[25] N. Mehta,et al. Study of dielectric relaxation and thermally activated a.c. conduction in lead containing topological glassy semiconductors , 2017 .
[26] S. Ghasemi,et al. Studying saturation mobility, threshold voltage, and stability of PMMA-SiO2-TMSPM nano-hybrid as OFET gate dielectric , 2016 .
[27] M. Chhowalla. Synthesis and Applications , 2016 .
[28] S. Ghasemi,et al. Structural and frequency-dependent dielectric properties of PVP-SiO2-TMSPM hybrid thin films , 2016 .
[29] Hong Liu,et al. Structure, Synthesis, and Applications of TiO2 Nanobelts , 2015, Advanced materials.
[30] Yi-Shao Lai,et al. Nanotribological properties of ALD-processed bilayer TiO2/ZnO films , 2014, Microelectron. Reliab..
[31] P. Prabukanthan,et al. Effect of 100 MeV O7+ ion beam irradiation on radio frequency reactive magnetron sputtered ZnO thin films , 2013 .
[32] N. Chandel,et al. Explanation of Meyer–Neldel rule in the thermally activated a.c. conduction in some chalcogenide glasses using correlated barrier hopping model , 2012, Journal of Materials Science.
[33] Heng Ji,et al. Modulation of the electrical properties of VO₂ nanobeams using an ionic liquid as a gating medium. , 2012, Nano letters.
[34] Blake R. Johnson,et al. Coherence in a transmon qubit with epitaxial tunnel junctions , 2011, 1111.5083.
[35] K. Choy,et al. Enhancement of crystallinity and optical properties of bilayer TiO2/ZnO thin films prepared by atomic layer deposition. , 2011, Journal of nanoscience and nanotechnology.
[36] P. Schmuki,et al. Doped TiO2 and TiO2 nanotubes: synthesis and applications. , 2010, Chemphyschem : a European journal of chemical physics and physical chemistry.
[37] Han-Bo-Ram Lee,et al. Applications of atomic layer deposition to nanofabrication and emerging nanodevices , 2009 .
[38] F. Abdel-wahab. The Normal and Inverted Meyer-Neldel Rule in the ac Conductivity , 2004 .
[39] Jeppe C. Dyre,et al. The random free-energy barrier model for ac conduction in disordered solids , 1988 .
[40] J. Dyre. COMMENT: A phenomenological model for the Meyer-Neldel rule: erratum , 1988 .
[41] J. Dyre. A phenomenological model for the Meyer-Neldel rule , 1986 .
[42] K. Shimakawa. On the temperature dependence of a.c. conduction in chalcogenide glasses , 1982 .
[43] A. Jonscher. A new understanding of the dielectric relaxation of solids , 1981 .
[44] J. Hvam,et al. Dispersive Transport and Recombination Lifetime in Phosphorus-Doped Hydrogenated Amorphous Silicon , 1981 .
[45] Yasuhiro Saito,et al. Erratum , 1978, Nature.
[46] S. Elliott. A theory of a.c. conduction in chalcogenide glasses , 1977 .
[47] A. K. Jonscher,et al. The ‘universal’ dielectric response , 1977, Nature.
[48] M. A. Ibrahim,et al. Dielectric and optical properties of CuO containing sodium zinc phosphate glasses , 2016 .
[49] F. Abdel-wahab. Signature of the Meyer-Neldel rule on the correlated barrier-hopping model , 2002 .