2021
DOI: 10.1016/j.surfcoat.2020.126587
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Ni-Al nanocomposite coating electrodeposited from deep eutectic solvent

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Cited by 12 publications
(10 citation statements)
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“…The aluminum content in a composite coating deposited using an electrolyte on a DES was found to reach nearly 20 wt.% [74]. In this study, the content of Al nanoparticles in the DES-based colloidal plating baths was 4, 8, 16, or 32 g L −1 .…”
Section: Nickel-based Compositesmentioning
confidence: 59%
See 1 more Smart Citation
“…The aluminum content in a composite coating deposited using an electrolyte on a DES was found to reach nearly 20 wt.% [74]. In this study, the content of Al nanoparticles in the DES-based colloidal plating baths was 4, 8, 16, or 32 g L −1 .…”
Section: Nickel-based Compositesmentioning
confidence: 59%
“…An interesting approach to the electrodeposition of composite coatings involves the co-deposition of a metallic matrix with metallic particles of a dispersed phase. For instance, the patterns of electrodeposition and the properties of the resulting composites from electrolytes based on DESs containing dissolved nickel (II) salt and nanoparticles of titanium or aluminum have been investigated [73,74]. Specifically, the titanium content in a composite coating depends on the concentration of particles in the electrolyte, current density, and duty cycle when using pulse electrolysis, and can reach approximately 11 wt.% [73].…”
Section: Nickel-based Compositesmentioning
confidence: 99%
“…during these two continuous steps, metal ions can be adsorbed around some nanoparticles to form ion clouds. The nucleation of plating can be obstructed due to a decrease in the current efficiency caused by the adsorption of the nonconductivity nanoparticles on the surface of the substrate (Hou et al , 2021). However, ion clouds formed by nanoparticles may promote the compositional fluctuation required for nucleation (Zenísek et al , 2015), thereby improving the nucleation rate of the plating.…”
Section: Discussionmentioning
confidence: 99%
“…It was, suitable for the catalysis of methanol oxidation [ 100 ]; for the synthesis of NiS 2 nanospheres [ 101 ]; and, very interestingly, for the modification of Fe 2 O 3 NPs to produce very specific electrochemical sensors—for H 2 O 2 , acetylcholine and the antibiotic dapsone [ 102 ]. Furthermore, ChCl:EG was used as a carrier and disperser for SiO 2 @Fe 3 O 4 (silica-coated magnetite) ferrofluids selective for Meloxicam [ 103 ], to electrodeposit Ni-Al nanocomposite coatings from NiCl 2 and aluminum dispersions [ 104 ], to synthesize platinum hollow-opened structures with enhanced performance in the electro-chemical oxidation of methanol [ 105 ], and as a solvent for assembling Ag nanoparticles onto copper substrates [ 106 ]. Glyceline was employed in the solvothermal preparation of functionalized metal-organic framework (MOF) nanoparticles containing zirconium [ 107 ], to immobilize Pd nanoparticles [ 108 ], and to deposit ZnO in situ on graphene sheets [ 109 ].…”
Section: Research On Des Blooms: From 2020 Up To Nowmentioning
confidence: 99%