International Journal of Hydrogen Energy, Journal Year: 2024, Volume and Issue: 96, P. 612 - 621
Published: Nov. 26, 2024
Language: Английский
International Journal of Hydrogen Energy, Journal Year: 2024, Volume and Issue: 96, P. 612 - 621
Published: Nov. 26, 2024
Language: Английский
International Journal of Hydrogen Energy, Journal Year: 2025, Volume and Issue: 105, P. 234 - 247
Published: Jan. 23, 2025
Language: Английский
Citations
3Journal of Colloid and Interface Science, Journal Year: 2025, Volume and Issue: unknown
Published: Jan. 1, 2025
Language: Английский
Citations
2Coordination Chemistry Reviews, Journal Year: 2024, Volume and Issue: 514, P. 215920 - 215920
Published: May 14, 2024
Language: Английский
Citations
11Materials Science and Engineering R Reports, Journal Year: 2024, Volume and Issue: 160, P. 100829 - 100829
Published: July 26, 2024
Language: Английский
Citations
9Chemical Engineering Journal, Journal Year: 2024, Volume and Issue: 488, P. 150950 - 150950
Published: April 2, 2024
Language: Английский
Citations
8Journal of environmental chemical engineering, Journal Year: 2024, Volume and Issue: 12(3), P. 112907 - 112907
Published: April 29, 2024
Language: Английский
Citations
8International Journal of Hydrogen Energy, Journal Year: 2025, Volume and Issue: 106, P. 481 - 492
Published: Feb. 4, 2025
Language: Английский
Citations
0Journal of Materials Chemistry A, Journal Year: 2025, Volume and Issue: unknown
Published: Jan. 1, 2025
Electroless deposition enables the in situ growth of NiFeP electrocatalysts on anion exchange membrane, resulting a binder- and ionomer-free structure that enhances catalytic activity durability to hydrogen evolution reaction.
Language: Английский
Citations
0Applied Surface Science, Journal Year: 2025, Volume and Issue: unknown, P. 162652 - 162652
Published: Feb. 1, 2025
Language: Английский
Citations
0Coatings, Journal Year: 2025, Volume and Issue: 15(2), P. 197 - 197
Published: Feb. 7, 2025
Single-layered Ni/Ni3N, inter-layered Ni/Ni3N/Ni, and double-layered Ni/Ni3N composite films were produced on an AZ31 magnesium alloy substrate through a magnetron sputtering technique, utilizing precise control over the N2 flow’s modulation. An investigation was conducted to examine phase composition, structural characteristics, tribological behavior, corrosion resistance of developed films. The experimental findings reveal that film exhibits stratified structure, wherein layers Ni Ni3N are superimposed with distinct interlaminar boundaries, have tight connection between them. Relative alloy, wear volume for single-layered significantly reduced, exhibiting reductions 68.1%, 80.4%, 90.1%, respectively. electrochemical current density substantially reduced deposition, respective decrements 89.5%, 91.4%, 88.2%. influence varies different laminated configurations, resulting in levels among various
Language: Английский
Citations
0