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Biological & pharmaceutical bulletin, ISSN 0918-6158, 2008, Volume 31, Issue 5, pp. 826 - 830
Journal Article
RSC advances, ISSN 2046-2069, 02/2019, Volume 9, Issue 12, pp. 6589 - 6595
A SnO2–TiO2 electrode was prepared via anodization and subsequent anodic potential shock for a binder-free anode for lithium-ion battery applications.... 
Journal Article
Journal of Power Sources, ISSN 0378-7753, 08/2019, Volume 431, pp. 25 - 30
Ant-nest nanostructured α-Fe2O3 films with a thickness of 10 μm are anodically grown on stainless steel without any binder, and the resulting material... 
Iron oxide | Binder-free | Li-ion battery | Stainless steels | Anodization | ELECTROCHEMISTRY | MECHANISM | ENERGY & FUELS | PERFORMANCE | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | TITANIUM | PHASE | FILMS | TIO2 MICROCONES | SOLAR | NANOWIRES
Journal Article
Electrochimica Acta, ISSN 0013-4686, 08/2017, Volume 246, pp. 190 - 196
The performance of VRB cell is enhanced simply by adding a tungsten additive to the electrolyte [Display omitted] •Tungsten chloride (WCl6) is employed for the... 
anolyte | electrocatalyst | vanadium redox flow battery | tungsten | additive | BATTERY | ELECTROCHEMISTRY | TRIOXIDE | CARBON | OXIDE | BEHAVIOR | VANADIUM | ENERGY-STORAGE | GRAPHITE FELT | Ionization | Tungsten | Vanadium | Electrochemistry | Electrolytes | Energy efficiency | Batteries | Tungsten compounds
Journal Article
02/2019, Volume 9, Issue 12, pp. 6589 - 6595
A SnO 2 -TiO 2 electrode was prepared via anodization and subsequent anodic potential shock for a binder-free anode for lithium-ion battery applications.... 
Journal Article
Catalysis Today, ISSN 0920-5861, 10/2017, Volume 295, pp. 132 - 139
[Display omitted] •Thin DSA bipolar plate (BP) based on IrOx-coated TiO2 NTs is successfully fabricated.•Thin DSA BP exhibits low overpotential and low charge... 
IrOx | Vanadium redox flow battery | Bipolar plate | Dimensionally stable anode | Anodization | OXIDATION | CELLS | ELECTRODES | CHEMISTRY, PHYSICAL | CHLORINE EVOLUTION | COMPOSITE | ELECTROCATALYSTS | CHALLENGES | ENGINEERING, CHEMICAL | FILMS | ENERGY-STORAGE | CHEMISTRY, APPLIED | SELECTIVITY
Journal Article
Surface & Coatings Technology, ISSN 0257-8972, 01/2017, Volume 310, pp. 106 - 112
A fast and non-toxic sealing method based on the use of NaAlO2 solution is investigated in detail. AlO2 sealing is carried out using NaAlO2 as the sealant,... 
Porous alumina | Ni-free | Sealing | Anodization | OXIDATION | PHYSICS, APPLIED | ARRAY | BEHAVIOR | ESCA | CORROSION-RESISTANCE | FILMS | COATINGS | FABRICATION | ALLOY | MATERIALS SCIENCE, COATINGS & FILMS | SURFACES
Journal Article
Catalysis Today, ISSN 0920-5861, 02/2016, Volume 260, pp. 135 - 139
•MnO2 is homogenously doped into nanotubular TiO2 by a potential shock method.•The potential shock voltage was optimized in ethylene glycol.•The optimal... 
MnO2 | Potential shock | Water oxidation | Nanotubes | MnO | STEP ANODIZATION | CHEMISTRY, PHYSICAL | ARRAYS | ALUMINA | OXYGEN EVOLUTION REACTION | DEPENDENCE | ELECTROCATALYTIC ACTIVITY | ENGINEERING, CHEMICAL | PHOTOCATALYTIC ACTIVITY | OXIDE CATALYST | FABRICATION | CHEMISTRY, APPLIED
Journal Article
ChemElectroChem, ISSN 2196-0216, 11/2018, Volume 5, Issue 22, pp. 3379 - 3382
Herein, we report a single‐step anodization process for WO3‐doped TiO2 nanotubes in an aqueous electrolyte containing the tungsten precursor Na2WO4 ⋅ 2H2O and... 
doping | electrochromism | nanotubes | intercalations | Anodization | ELECTROCHEMISTRY | TITANIUM | CELL FATE | FILMS | DOPED TIO2 | ELECTRODE | ALLOY | PHOTOCATALYSTS | WATER | Aqueous electrolytes | Sodium tungstate | Precursors | Anodizing | Doping | Nanotubes | Electrolytes | Electrochromism | Tungsten oxides | Titanium dioxide
Journal Article
Journal of Hematology and Oncology, ISSN 1756-8722, 2012, Volume 5, Issue 1, pp. 49 - 49
Journal Article
Nanotechnology, ISSN 0957-4484, 02/2017, Volume 28, Issue 11, p. 115605
We describe a novel procedure to fabricate WO3@surface-mounted metal-organic framework (SURMOF) hybrid materials by electrodeposition of WO3 nanoparticles into... 
hybrid materials | nanoparticles | electrodeposition | SURMOFs | thin films | SYSTEM | PHYSICS, APPLIED | MATERIALS SCIENCE, MULTIDISCIPLINARY | DEVICES | NANOSCIENCE & NANOTECHNOLOGY | LIQUID-PHASE EPITAXY
Journal Article
International Journal of Hydrogen Energy, ISSN 0360-3199, 03/2017, Volume 42, Issue 10, pp. 6657 - 6664
The simultaneous doping of RuO2 and IrO2 catalysts into anodic TiO2 nanotubes (NTs) was successfully achieved by single-step anodization. KRuO4 was used as the... 
RuO2 | TiO2 NTs | Water oxidation | Anodization | IrO2 | TiO | NTs | RuO | IrO | STEP ANODIZATION | OXIDATION | ELECTROLYSIS | ELECTROCHEMISTRY | METAL-OXIDE NANOPARTICLES | ENERGY & FUELS | STABILITY | ELECTRODES | CHEMISTRY, PHYSICAL | RUTHENIUM | OXYGEN EVOLUTION REACTION | ELECTROCATALYSIS | FABRICATION
Journal Article
Applied Surface Science, ISSN 0169-4332, 01/2015, Volume 324, pp. 414 - 418
•NN4-doped WO3 was successfully fabricated by a wet-based method using ammonium hydroxide (NH4OH).•(NH4)10W12O41 phase was formed during the NH4OH... 
Tungsten oxide | Anodic porous film | Water splitting | Doping | Ammonium hydroxide | OXIDATION | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | TRIOXIDE | TUNGSTEN-OXIDE | CHEMISTRY, PHYSICAL | PHOTOANODES | VISIBLE-LIGHT | FILMS | PHOTOCATALYTIC ACTIVITY | NANOTUBES | MATERIALS SCIENCE, COATINGS & FILMS | Anodizing | X-rays | Illumination | Foils | Tungsten oxides | Current density
Journal Article
Thin Solid Films, ISSN 0040-6090, 02/2019, Volume 671, pp. 111 - 119
Electropolished copper foil was passivated in aqueous solution of 1.0 M NaOH at negative potential range vs. silver chloride electrode at room temperature. The... 
Copper oxide | Cuprous oxide | Nano-needles | Passivation | Self-organization | Bandgap | PHYSICS, CONDENSED MATTER | PHYSICS, APPLIED | OXALIC-ACID | MATERIALS SCIENCE, MULTIDISCIPLINARY | ALUMINA | ARRAYS | AAO | FILMS | ANODIZATION | ALLOYS | KINETICS | NANOTUBES | MORPHOLOGY | MATERIALS SCIENCE, COATINGS & FILMS
Journal Article
Applied Chemistry for Engineering, ISSN 1225-0112, 06/2015, Volume 26, Issue 3, pp. 306 - 310
Journal Article
Journal Article