Study of ZrO2 nanolayers deposited electrochemically on different conductive substrates
暂无分享,去创建一个
K. Lovchinov | T. Babeva | V. Strijkova | P. Ivanov | G. Marinov | L. Slavov | R. Gergova | G. Alexieva
[1] P. Thangadurai,et al. Surface analysis, gate leakage currents and electrical characteristics of Mn ions incorporated into ZrO2 gate dielectric layer in silicon MOS capacitors , 2020 .
[2] Taotao Wu,et al. Design and preparation of composite coatings with increased reflectivity under high-energy continuous wave laser ablation , 2020 .
[3] K. Anandan,et al. Effects of rare earth, transition and post transition metal ions on structural and optical properties and photocatalytic activities of zirconia (ZrO2) nanoparticles synthesized via the facile precipitation process , 2020 .
[4] S. Kakil,et al. High-sensitive UV photodetector based on ZrO2 nanoparticles for humidity applications , 2020, Journal of Materials Science: Materials in Electronics.
[5] Junbiao Peng,et al. Research Progress of High Dielectric Constant Zirconia-Based Materials for Gate Dielectric Application , 2020, Coatings.
[6] Dou Zhang,et al. Resistive switching in atomic layer deposited HfO2/ZrO2 nanolayer stacks , 2020, Applied Surface Science.
[7] T. Mokrani,et al. The synthesis, characterization and electrochemical study of zirconia oxide nanoparticles for fuel cell application , 2020 .
[8] Vishnu Chauhan,et al. Phase transformation and modifications in high-k ZrO2 nanocrystalline thin films by low energy Kr5+ ion beam irradiation , 2020 .
[9] N. Shetti,et al. Copper-doped ZrO2 nanoparticles as high-performance catalysts for efficient removal of toxic organic pollutants and stable solar water oxidation. , 2020, Journal of environmental management.
[10] B. Cho,et al. Ultrathin ZrOx-Organic Hybrid Dielectric (EOT 3.2 nm) via Initiated Chemical Vapor Deposition for High-Performance Flexible Electronics. , 2019, ACS applied materials & interfaces.
[11] A. S. Mokrushin,et al. Gas-sensing properties of nanostructured TiO2–xZrO2 thin films obtained by the sol–gel method , 2019, Journal of Sol-Gel Science and Technology.
[12] Chaohui He,et al. Electrochemical co-deposition synthesis of Au-ZrO2-graphene nanocomposite for a nonenzymatic methyl parathion sensor. , 2019, Analytica chimica acta.
[13] K. Yoo,et al. Template-free synthesis of tetragonal Co-doped ZrO2 nanoparticles for applications in electrochemical energy storage and water treatment , 2019, Electrochimica Acta.
[14] A. Husain,et al. Thermally stable and highly sensitive ethene gas sensor based on polythiophene/zirconium oxide nanocomposites , 2019, Materials Today Communications.
[15] E. Hemalatha,et al. Gas sensing performances of pure and Cu-doped ZrO2 nano structures , 2019, Applied Physics A.
[16] Ching-ping Wong,et al. Amorphous silicon and silicates-stabilized ZrO2 hollow fiber with low thermal conductivity and high phase stability derived from a cogon template , 2019, Ceramics International.
[17] Hong-juan Zeng,et al. The electrolytic deposition of ZrO2 film on ITO glass applied in the detection of rutin , 2019, Integrated Ferroelectrics.
[18] J. Rezek,et al. Significant improvement of the performance of ZrO2/V1-W O2/ZrO2 thermochromic coatings by utilizing a second-order interference , 2019, Solar Energy Materials and Solar Cells.
[19] Shizhong Wei,et al. Microstructure and mechanical properties of W-ZrO2 alloys by different preparation techniques , 2019, Journal of Alloys and Compounds.
[20] N. Koratkar,et al. Studies of the electronic excitation modifications induced by SHI of Au ions in RF sputtered ZrO2 thin films , 2018, Materials Science in Semiconductor Processing.
[21] P. Thangadurai,et al. Crystalline phase dependent electrical properties of Mg incorporated tetragonal phase stabilized ZrO2 high-κ dielectric layer in Si based MOS capacitors , 2018, Materials Science in Semiconductor Processing.
[22] M. R. Belkhedkar,et al. Structural, electrical and optical properties of nanostructured ZrO2 thin film deposited by SILAR method , 2018 .
[23] D. Ramachandran,et al. Corrosion and biocompatibility behaviour of zirconia coating by EBPVD for biomedical applications , 2018 .
[24] H. P. Nagaswarupa,et al. New green synthesized reduced graphene oxide–ZrO2 composite as high performance photocatalyst under sunlight , 2017 .
[25] I. Kariper,et al. Wet chemical methods for producing mixing crystalline phase ZrO2 thin film , 2016 .
[26] S. Sagadevan,et al. Synthesis of lead titanate nanoparticles via sol–gel technique and its characterization , 2016, Journal of Materials Science: Materials in Electronics.
[27] S. Q. Zhu,et al. Formation and properties of Al2O3–ZrO2 composite anodic oxide film on etched aluminum foil by electrodeposition and anodization , 2016, Journal of Materials Science: Materials in Electronics.
[28] Abdolreza Rezaeifard,et al. A novel protocol for selective synthesis of monoclinic zirconia nanoparticles as a heterogeneous catalyst for condensation of 1,2-diamines with 1,2-dicarbonyl compounds , 2014 .
[29] T. Tseng,et al. Growth, dielectric properties, and memory device applications of ZrO2 thin films , 2013 .
[30] Myriam Zerrad,et al. Characterization of zirconia- and niobia-silica mixture coatings produced by ion-beam sputtering. , 2011, Applied optics.
[31] Alireza,et al. Effect of Al Powder and Silica Sol on the Structure and Mechanical Properties of Al2O3-ZrO2 Foams , 2010 .
[32] Pijush Bhattacharya,et al. Effect of high substrate temperature on Al-doped ZnO thin films grown by pulsed laser deposition , 2003 .
[33] D. Kuo,et al. Growth and properties of sputtered zirconia and zirconia–silica thin films , 2003 .
[34] Tsutomu Yamaguchi. Application of ZrO2 as a catalyst and a catalyst support , 1994 .
[35] N. Minh. Ceramic Fuel Cells , 1993 .
[36] N. Shetti,et al. Efficient removal of toxic organic dyes and photoelectrochemical properties of iron-doped zirconia nanoparticles. , 2019, Chemosphere.
[37] P. Thangadurai,et al. Influence of Mg ion concentration in ZrO2 gate dielectric layered silicon based MOS capacitors for memory applications: Thorough understanding of conduction processes , 2019, Materials Science in Semiconductor Processing.
[38] H. Arakawa,et al. Photocatalytic decomposition of water and photocatalytic reduction of carbon dioxide over zirconia catalyst , 1993 .