Keywords: الکترولیز نمک نمک; Silicon-copper composite; Nanowire; Molten salt electrolysis; Lithium-ion batteries;
مقالات ISI الکترولیز نمک نمک (ترجمه نشده)
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Keywords: الکترولیز نمک نمک; Life cycle assessment; Rare earth elements; Reduction; Molten salt electrolysis;
Keywords: الکترولیز نمک نمک; Hydrogen evolution reaction; Electro-catalysis; Nanostructured carbides; Nitrogen doped molybdenum carbide; Molten salt electrolysis;
Keywords: الکترولیز نمک نمک; Lithium electrochemical cell; Mass transfer; Turbulent flow; Two-phase flow; Molten salt electrolysis;
Keywords: الکترولیز نمک نمک; Molten salt electrolysis; Liquid lithium; Colloidal lithium; LiCl-KCl-Li2O; High-speed digital microscopy;
Keywords: الکترولیز نمک نمک; Tungsten carbide; Recycle; Super hard alloy; Molten sodium hydroxide; Anodic dissolution; Molten salt electrolysis;
Keywords: الکترولیز نمک نمک; In-situ lunar resource utilization; Molten salt electrolysis; Aluminothothermic reduction; Cryolite; Coal fly ash;
Keywords: الکترولیز نمک نمک; Molten salt electrolysis; Metallic vanadium; Electrochemical reduction; Sodium metavanadate
Keywords: الکترولیز نمک نمک; titanium powder; hydrogenation reaction; molten salt electrolysis; hydrogen content;
Cathodic reduction process of Al-Cu-Y alloy in fluoride-oxide eutectic system via molten salt electrolysis
Keywords: الکترولیز نمک نمک; Fluoride-oxide eutectic; Al-Cu-Y alloy; Molten salt electrolysis; Cyclic voltammetry; Electrode process; Rare earths;
Verification of the electro-decomposition of the CaO component in equimolar CaCl2-NaCl molten salt during the direct electrolysis of ilmenite in a two-terminal chamber
Keywords: الکترولیز نمک نمک; CaO concentration; Decomposition process; Calciothermic; Reduction; Molten salt electrolysis;
Electrochemical conversion of CO2 to carbon and oxygen in LiCl-Li2O melts
Keywords: الکترولیز نمک نمک; Martian atmosphere; CO2 conversion; Molten salt electrolysis; Carbon; Oxygen;
Thermodynamic analysis on the direct preparation of metallic vanadium from NaVO3 by molten salt electrolysis
Keywords: الکترولیز نمک نمک; Molten salt electrolysis; NaVO3; Thermodynamic analysis; Metallic vanadium; Decomposition voltage
Electrochemical mechanism of electrolysis codeposition of Mg-Sr alloy in molten salt
Keywords: الکترولیز نمک نمک; molten salt electrolysis; Mg-Sr alloy; electrochemical reduction;
Valence states, impurities and electrocrystallization behaviors during molten salt electrorefining for preparation of high-purity titanium powder from sponge titanium
Keywords: الکترولیز نمک نمک; molten salt electrolysis; high-purity titanium; powder; valence; electrocrystallization;
Liquid diffusion of the instantaneously released oxygen ion in the electrolytic porous Fe from solid Fe2O3 in molten CaCl2
Keywords: الکترولیز نمک نمک; Solid-state electrochemistry; Porous electrode; Diffusion theories; Molten salt electrolysis; Iron oxides;
Production of Fe-Ti alloy from mixed ilmenite and titanium dioxide by direct electrochemical reduction in molten calcium chloride
Keywords: الکترولیز نمک نمک; FeTiO3; Electrochemical reduction; Molten salt electrolysis; Fe-Ti alloy;
Production of Nb–Ti–Ni alloy in molten CaCl2
Keywords: الکترولیز نمک نمک; Oxide reduction; Molten salt electrolysis; Alloy powder synthesis; Hydrogen-permeable alloy
Electrical conductivity of NaF-AlF3-CaF2-Al2O3-ZrO2 molten salts
Keywords: الکترولیز نمک نمک; ZrO2; molten salt electrolysis; electrical conductivity; NaF; AlF3; Al-Zr alloy;
Growth of platelet-structured CuAlO2 thin film on CuAl alloy by molten salt electrolysis method
Keywords: الکترولیز نمک نمک; CuAlO2; Molten salt electrolysis; X-ray techniques; Thin films; CuAl alloy; Semiconductors
Preparation and characterization of tungsten powder through molten salt electrolysis in a CaWO4-CaCl2-NaCl system
Keywords: الکترولیز نمک نمک; Calcium tungstate; Tungsten powder; Molten salt electrolysis; Cyclic voltammetry;
Ultra-fast boriding of nickel aluminide
Keywords: الکترولیز نمک نمک; Boriding; Ni3Al; Molten salt electrolysis; Ni4B3; Ni3B; Ni20AlB14
Electrochemical boriding and characterization of AISI D2 tool steel
Keywords: الکترولیز نمک نمک; Boriding; FeB; CrB; Fe2B; Molten salt electrolysis; D2 steel
Calciothermic reduction of NiO by molten salt electrolysis of CaO in CaCl2 melt
Keywords: الکترولیز نمک نمک; Nickel oxide; Calcium oxide; Calcium chloride; Calciothermic reduction; Molten salt electrolysis
Electrochemical evolution of hydrogen on composite La–Ni–Al/Ni–S alloy film in water electrolysis
Keywords: الکترولیز نمک نمک; Composite La–Ni–Al/Ni–S film; Water electrolysis; HER; Hydrogen storage alloy; Molten salt electrolysis
Hierarchically structured titanium foams for tissue scaffold applications
Keywords: الکترولیز نمک نمک; Hierarchical titanium foams; Biomedical implants; Molten salt electrolysis; X-ray microtomography; Spinal fusion
Preparation of the composite LaNi3.7Al1.3/Ni–S–Co alloy film and its HER activity in alkaline medium
Keywords: الکترولیز نمک نمک; Composite LaNi3.7Al1.3/Ni–S–Co film; Molten salt electrolysis; Water electrolysis; HER; Hydrogen storage alloy
Preparation and electrochemical properties of composite LaNix/Ni–S–Co alloy film
Keywords: الکترولیز نمک نمک; Composite LaNix/Ni–S–Co film; Water electrolysis; HER; Hydrogen storage alloy; Molten salt electrolysis
Preparation of Mg-Li alloys by electrolysis in molten salt at low temperature
Keywords: الکترولیز نمک نمک; Mg-Li alloys; Molten salt electrolysis; Low temperature; Current efficiency;
An electrochemical method for the preparation of Mg–Li alloys at low temperature molten salt system
Keywords: الکترولیز نمک نمک; Mg–Li alloys; Molten salt electrolysis; Low temperature; Current efficiency; Alloy formation rate
Production of titanium powder directly from TiO2 in CaCl2 through an electronically mediated reaction (EMR)
Keywords: الکترولیز نمک نمک; Titanium; Titanium dioxide; Metallothermic reaction; Reduction process; Molten salt electrolysis; Metal powder;
Calciothermic reduction of TiO2 and in situ electrolysis of CaO in the molten CaCl2
Keywords: الکترولیز نمک نمک; Titanium refining; Titanium oxide; Calcium chloride; Calciothermic reduction; Molten salt electrolysis;