Capped and Uncapped Nickel Tungstate (NiWO4) Nanomaterials: a comparison study for Anti-corrosion of Copper Metal in NaCl Solution
-
Add time:08/20/2019 Source:sciencedirect.com
We report for the first time, the role of capping agent and size effect of nickel tungstate (NiWO4) nanomaterials (NTN) in mitigation of copper corrosion in chloride medium. NTN were synthesized firstly, via a simple wet-chemical precipitation route without any capping agents (conventional process) and secondly with citric acid as capping agent, both in the presence of sodium tungstate (Na2WO4).Electrochemical analyses for corrosion protection have been tested and results indicated an improved corrosion protection of copper by the capped particles compared to the uncapped (conventional method) particles. A comparison was also made against Na2WO4 (a commercially available corrosion inhibitor).
We also recommend Trading Suppliers and Manufacturers of COPPER TUNGSTATE (cas 13587-35-4). Pls Click Website Link as below: cas 13587-35-4 suppliers
Prev:Taguchi method assisted optimization of electrochemical synthesis and structural characterization of COPPER TUNGSTATE (cas 13587-35-4) nanoparticles
Next:Regular ArticleSelf-templating synthesis of hollow COPPER TUNGSTATE (cas 13587-35-4) spheres as adsorbents for dye removal) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Solid state studies on cobalt and COPPER TUNGSTATE (cas 13587-35-4)s nano materials08/24/2019
- Facile fabrication of bitter-gourd-shaped copper (II) tungstate thin films for improved photocatalytic water splitting08/23/2019
- Microwave-assisted synthesis of COPPER TUNGSTATE (cas 13587-35-4) nanopowder for supercapacitor applications08/22/2019
- Regular ArticleSelf-templating synthesis of hollow COPPER TUNGSTATE (cas 13587-35-4) spheres as adsorbents for dye removal08/21/2019
- Taguchi method assisted optimization of electrochemical synthesis and structural characterization of COPPER TUNGSTATE (cas 13587-35-4) nanoparticles08/19/2019
-
Health and Chemical more >


