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Paper Publications
[1] 张朝阳.Corrosion Resistance Improvement of Ni-P Coatings: Surface Cracks with Different Temperatures Repaired by Laser Remelting
[2] 张朝阳.Electrodeposition of diamond-like carbon films on micro-textured surfaces
[3] 张朝阳.Progress in magnetically responsive cilia for surface applications: From engineering fabrication to functionality
[4] 张朝阳.Surface structural engineering of self-supported HER electrodes: Multiscale micro/nanostructure regulation and their roles in HER process
[5] 张朝阳.Magnetically responsive superhydrophobic surface: Reversible switching for water repellency and active/passive anti-icing
[6] 张朝阳.Preparation of Ni nanocone/Grid electrodes by laser-electrodeposition combined process as an efficient and stable electrocatalyst for hydrogen evolution reaction
[7] 张朝阳.Exploring the application of laser thermal effect in the multilayer gradient coatings designed by electrochemical deposition: Parameters, advancements, and limitations
[8] 张朝阳.Reproducible PDMS flexible superhydrophobic films: A method utilizing picosecond laser-etched templates
[9] 张朝阳.Effect of laser-induced grain growth on the electrochemical and immersion corrosion behavior of electrochemical deposited Ni coatings
[10] 张朝阳.激光电沉积复合制备定域微纳结构及其超疏水性能研究
[11] 张朝阳.Picosecond laser remelting of electrodeposited Ni–P coating: Parameters optimization and electrochemical corrosion behavior
[12] 张朝阳.A novel electrochemical deposited Fe–Ni coating designed by laser-induced periodic current density: Effect of microstructure on microhardness and wear resistance improvement
[13] 张朝阳.Investigation of the Enhancement Mechanism of Electrochemically Deposited Ni-Co-W Coatings via Laser Irradiation: Effect of W Contents on Corrosion Resistance
[14] 张朝阳.Electrochemical and immersion corrosion performance improvement of electrodeposited Fe–Ni coating: Effect of laser-induced periodic current on microstructure evolution
[15] 张朝阳.Improvement of the corrosion resistance of amorphous Ni-P coatings modified by a laser–electrodeposition hybrid process: Effect of morphology evolution on the electrochemical corrosion behavior
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