Home

Unalmas alumínium Rendes ni mo alloy lattice Döntés Kontinentális Észlelési

Introduction to Alloy 625 - Part 2 | LFF Group
Introduction to Alloy 625 - Part 2 | LFF Group

Role of Oxidized Mo Species on the Active Surface of Ni–Mo Electrocatalysts  for Hydrogen Evolution under Alkaline Conditions | ACS Catalysis
Role of Oxidized Mo Species on the Active Surface of Ni–Mo Electrocatalysts for Hydrogen Evolution under Alkaline Conditions | ACS Catalysis

Electrodeposition of self-supported NiMo amorphous coating as an efficient  and stable catalyst for hydrogen evolution reaction | SpringerLink
Electrodeposition of self-supported NiMo amorphous coating as an efficient and stable catalyst for hydrogen evolution reaction | SpringerLink

Undercooled and Rapidly Quenched Ni-Mo Alloys
Undercooled and Rapidly Quenched Ni-Mo Alloys

Theoretical investigations on the evolution of ordering in Ni–Mo-based  alloys | SpringerLink
Theoretical investigations on the evolution of ordering in Ni–Mo-based alloys | SpringerLink

Lattice parameter variation and its effect on precipitation behaviour of  ordered Ni2(Cr,Mo) phase in Ni-Cr-Mo alloys - ScienceDirect
Lattice parameter variation and its effect on precipitation behaviour of ordered Ni2(Cr,Mo) phase in Ni-Cr-Mo alloys - ScienceDirect

Metals | Free Full-Text | Synthesis of Complex-Alloyed Nickel Aluminides  from Oxide Compounds by Aluminothermic Method
Metals | Free Full-Text | Synthesis of Complex-Alloyed Nickel Aluminides from Oxide Compounds by Aluminothermic Method

Metals | Free Full-Text | Bottom-up Synthesis of Porous NiMo Alloy for  Hydrogen Evolution Reaction
Metals | Free Full-Text | Bottom-up Synthesis of Porous NiMo Alloy for Hydrogen Evolution Reaction

a) HAADF-STEM image of Cr 20 Fe 6 Co 34 Ni 34 Mo 6 alloy after cold... |  Download Scientific Diagram
a) HAADF-STEM image of Cr 20 Fe 6 Co 34 Ni 34 Mo 6 alloy after cold... | Download Scientific Diagram

Introduction to Alloy 625 - Part 2 | LFF Group
Introduction to Alloy 625 - Part 2 | LFF Group

Deformation behavior of a Co-Cr-Fe-Ni-Mo medium-entropy alloy at extremely  low temperatures - ScienceDirect
Deformation behavior of a Co-Cr-Fe-Ni-Mo medium-entropy alloy at extremely low temperatures - ScienceDirect

Kinetics of alloy formation and densification in Fe-Ni-Mo microfilaments  extruded from oxide- or metal-powder inks - ScienceDirect
Kinetics of alloy formation and densification in Fe-Ni-Mo microfilaments extruded from oxide- or metal-powder inks - ScienceDirect

Coatings | Free Full-Text | Electrodeposition Behavior of Polycrystalline Ni –Mo–La Composite in Alkaline Solution
Coatings | Free Full-Text | Electrodeposition Behavior of Polycrystalline Ni –Mo–La Composite in Alkaline Solution

PDF] On the effective lattice parameter of binary alloys | Semantic Scholar
PDF] On the effective lattice parameter of binary alloys | Semantic Scholar

Schemes of the lattice structures of the phases B2-NiAl (a), L1 2 -Ni 3...  | Download Scientific Diagram
Schemes of the lattice structures of the phases B2-NiAl (a), L1 2 -Ni 3... | Download Scientific Diagram

Ni-Mo Alloy Electrodeposited over Ni Substrate for HER on Water  Electrolysis | SpringerLink
Ni-Mo Alloy Electrodeposited over Ni Substrate for HER on Water Electrolysis | SpringerLink

Catalysts | Free Full-Text | Effect of Ni–Mo Carbide Catalyst Formation on  Furfural Hydrogenation
Catalysts | Free Full-Text | Effect of Ni–Mo Carbide Catalyst Formation on Furfural Hydrogenation

Role of Oxidized Mo Species on the Active Surface of Ni–Mo Electrocatalysts  for Hydrogen Evolution under Alkaline Conditions | ACS Catalysis
Role of Oxidized Mo Species on the Active Surface of Ni–Mo Electrocatalysts for Hydrogen Evolution under Alkaline Conditions | ACS Catalysis

Efficient hydrogen evolution by ternary molybdenum sulfoselenide particles  on self-standing porous nickel diselenide foam | Nature Communications
Efficient hydrogen evolution by ternary molybdenum sulfoselenide particles on self-standing porous nickel diselenide foam | Nature Communications

Phosphorus doped nickel-molybdenum aerogel for efficient overall water  splitting - ScienceDirect
Phosphorus doped nickel-molybdenum aerogel for efficient overall water splitting - ScienceDirect

Lattice Strained Ni-Co alloy as a High-Performance Catalyst for Catalytic  Dry Reforming of Methane | ACS Catalysis
Lattice Strained Ni-Co alloy as a High-Performance Catalyst for Catalytic Dry Reforming of Methane | ACS Catalysis

Ni-Mo Alloy Electrodeposited over Ni Substrate for HER on Water  Electrolysis | SpringerLink
Ni-Mo Alloy Electrodeposited over Ni Substrate for HER on Water Electrolysis | SpringerLink

Amorphous nickel-cobalt complexes hybridized with 1T-phase molybdenum  disulfide via hydrazine-induced phase transformation for water splitting |  Nature Communications
Amorphous nickel-cobalt complexes hybridized with 1T-phase molybdenum disulfide via hydrazine-induced phase transformation for water splitting | Nature Communications

Electrodeposition of Ni–Mo alloy coatings from choline chloride and  propylene glycol deep eutectic solvent plating bath | Scientific Reports
Electrodeposition of Ni–Mo alloy coatings from choline chloride and propylene glycol deep eutectic solvent plating bath | Scientific Reports

Interface Catalysis of Nickel Molybdenum (NiMo) Alloys on Two-Dimensional  (2D) MXene for Enhanced Hydrogen Electrochemistry | The Journal of Physical  Chemistry Letters
Interface Catalysis of Nickel Molybdenum (NiMo) Alloys on Two-Dimensional (2D) MXene for Enhanced Hydrogen Electrochemistry | The Journal of Physical Chemistry Letters

Electrocatalytic properties for the hydrogen evolution of the  electrodeposited Ni–Mo/WC composites - ScienceDirect
Electrocatalytic properties for the hydrogen evolution of the electrodeposited Ni–Mo/WC composites - ScienceDirect

Corrosion Characteristics of Typical Ni–Cr Alloys and Ni–Cr–Mo Alloys in  Supercritical Water: A Review | Industrial & Engineering Chemistry Research
Corrosion Characteristics of Typical Ni–Cr Alloys and Ni–Cr–Mo Alloys in Supercritical Water: A Review | Industrial & Engineering Chemistry Research