Open Journal of Metal

Open Journal of Metal

ISSN Print: 2164-2761
ISSN Online: 2164-277X
www.scirp.org/journal/ojmetal
E-mail: ojmetal@scirp.org
Citations    
"Thermal Stability of Ni-Fe Alloy Foils Continuously Electrodeposited in a Fluorborate Bath"
written by Wei-Su Chang, Yang Wei, Jun-Ming Guo, Feng-Jiao He,
published by Open Journal of Metal, Vol.2 No.1, 2012
has been cited by the following article(s):
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[1] Pyrochlore@ PBA derived electrocatalyst containing Ru nanoparticle and NiFe alloy for the oxygen evolution and reduction reactions
Journal of Alloys and Compounds, 2024
[2] Layer-by-layer connection for large area single crystal boron nitride multilayer films
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[3] Structural, thermal and optical characteristics of Fe 1− X Zr X alloy by using mechanical milling approach: influence of Zr4+ ion
Materials Research …, 2024
[4] Understanding the Transformation Leading to Transition Metal-Nitrogen-Carbon (MNC) Catalysts During Pyrolysis
2023
[5] Fabrication of Large-Sized Invar Alloy Film with Low Thermal Expansion by Pulse Reverse Electrodeposition
Journal of The …, 2023
[6] Design of Nano‐Composite Structured Electrode for High‐Performance and Stability of Metal‐Supported Solid Oxide Cells
Advanced Materials …, 2023
[7] Effects of Ni precursors on the formation of Mg–Fe–Ni intermetallic hydrides, kinetics, and reversibility
RSC …, 2023
[8] Vacancy-Pba Derived Nanoparticle Containing Defect-Rich Crystal Structure and P, S Dual-Doping as an Outstanding Oxygen Evolution Electrocatalyst
SSRN Electronic Journal, 2023
[9] Rational Design of a Stable Fe‐rich Ni‐Fe Layered Double Hydroxide for the Industrially Relevant Dynamic Operation of Alkaline Water Electrolyzers
Advanced Energy …, 2023
[10] Effects of Production Parameters and Heat Treatment on the Microstructure and Magnetic Properties of The In-Situ Synthesized Fe-Ni Permalloy Produced …
Available at SSRN 4026149, 2022
[11] Periodic ultrasound-assisted electrodeposition of Fe–Ni alloy foil
Materials Research Bulletin, 2022
[12] Influence of ultrasonic in low thermal expansion Fe-Ni electrodeposition process for micro-electroforming
Ultrasonics Sonochemistry, 2022
[13] Effects of processing parameters and heat treatment on the microstructure and magnetic properties of the in-situ synthesized Fe-Ni permalloy produced using direct …
Journal of Alloys and …, 2022
[14] Experimental Research Regarding the Rolling Technology of the Fe-Ni Alloys
Archives of Metallurgy and Materials, 2022
[15] Effects of Production Parameters and Heat Treatment on the Microstructure and Magnetic Properties of The In-Situ Synthesized Fe-Ni Permalloy Produced Using Direct Energy Deposition
SSRN Electronic Journal, 2022
[16] Keyword: iron-nickel; rolling technology; mechanical characteristics
2022
[17] Reducing the Internal Stress of Fe-Ni Magnetic Film Using the Electrochemical Method
Processes, 2021
[18] Catalysts by pyrolysis: Direct observation of chemical and morphological transformations leading to transition metal-nitrogen-carbon materials
2021
[19] Ni-Fe alloy nanostructured electrodes for water splitting in alkaline electrolyser
2021
[20] Thermal stability of nano-crystalline nickel electrodeposited into porous alumina
2020
[21] Correlation between the bath composition and nanoporosity of DC‐electrodeposited Ni‐Fe alloy
2020
[22] Steam reforming of ethylene over nickel based spinel oxides
2020
[23] Ultrasound-assisted electrodeposition of Fe-Ni film for OLED mask
Materials Research Bulletin, 2020
[24] Effect of Annealing on Hardness and Elastic Modulus of Invar36 Thin Films Deposited by Direct Current Sputtering for Strain Gauge Applications
… Journal of Thin Film …, 2019
[25] Studying the thermodynamic properties of composite magnetic material based on anodic alumina
2019
[26] Mechanical and fracture behaviour of the three-scale hierarchy structure in As-deposited and annealed nanocrystalline electrodeposited Ni–Fe alloys
2019
[27] Effect of Cobalt on the Nano-Mechanical and Magnetic Properties of Electroformed Fe–Ni–Co Thin Film
2019
[28] Magnetooptical response of permalloy multilayer structures on different substrate in the IR–VIS–UV spectral range
2019
[29] ДИАГНОСТИКА МАТЕРИАЛОВ
2019
[30] Novel NiFe/NiFe-LDH composites as competitive catalysts for clean energy purposes
Applied Surface Science, 2018
[31] Microstructure, texture and tensile behavior of pulsed electrodeposited Ni–Al composites produced using organic additive-free sulfamate bath loaded with Al …
Materials Characterization, 2018
[32] Basic research on electroforming of Fe–Ni shell with low thermal expansion
2018
[33] X-ray imaging of powder consolidation during laser additive manufacturing
2017
[34] Invar Electrodeposition for Controlled Expansion Interconnects
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[35] Effect of current density and pH in obtaining the Ni-Fe alloy by electrodeposition
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[36] Efeito da densidade de corrente e pH na obtenção da liga Ni-Fe por eletrodeposição
Revista Materia, 2017
[37] Electrodeposition of Ni–Fe alloys, composites, and nano coatings-A review
Journal of Alloys and Compounds, 2016
[38] Effect of microstructure of vacuum-deposited Fe100− xNix (30< x< 39) foils with FCC structure on their mechanical properties
Journal of Alloys and Compounds, 2015
[39] Effect of microstructure of vacuum-deposited Fe< sub> 100< sub>?< i> x Ni< i> x(30<< i> x< 39) foils with FCC structure on their mechanical properties
Journal of Alloys and Compounds, 2015
[40] Structure and Properties of Nanostructured Vacuum-Deposited Foils of Invar Fe–(35–38 wt%) Ni Alloys
Journal of Materials Science & Technology, 2015
[41] Structure and properties of electrodeposited functional Ni–Fe/TiN nanocomposite coatings
Surface and Coatings Technology, 2015
[42] Electrodeposition and electro-catalytic study of nanocrystalline Ni–Fe alloy
International Journal of Hydrogen Energy, 2014
[43] Effect of deposition conditions of Fe100 ? xNix (30 < x < 40) condensates on their structure
Surface and Coatings Technology, 2014
[44] Effect of deposition conditions of Fe100− xNix (30< x< 40) condensates on their structure
Surface and Coatings Technology, 2014
[45] Electrofabrication of multilayer Fe–Ni alloy coatings for better corrosion protection
Applied Physics A, 2014
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