ARTIKEL

Kinetic Investigation by Batch Processing of Film Growth during the Electrodeposition of Titanium from Ethaline

20.06.2025
Kinetic Investigation by Batch Processing of Film Growth during the Electrodeposition of Titanium from Ethaline

Von Wiley-VCH zur Verfügung gestellt

The electrodeposition of titanium in ethaline appears to proceed according to established kinetics in prior literature except above 50 C, where the production of intermediary ions from the polyol process begins to play a large role in the deposition kinetics.


Titanium electrodeposition as a technological advance has been out of reach due to the poor film quality obtained when using previously developed methods. This study shows that the electrodeposition of Ti is possible and feasible from the deep eutectic solvent ethaline. Moreover, this study shows through batch analysis that this deposition has temperature-dependent aspects that alter the film deposition kinetics upon modest heating. This ultraviolet–visible spectroscopic study is highlighting the more facile reduction of Ti4+ to Ti3+ and then to Ti2+ at elevated temperatures. Understanding the underlying kinetics of electrodeposition opens up new venues for the application of this important metal.

Verwandte Artikel

Kinetic Investigation by Batch Processing of Film Growth during the Electrodeposition of Titanium from Ethaline
Drug Repurposing Investigation for Combating Ebola Virus Disease: Database Mining, Docking Calculations, Molecular Dynamics, and Density Functional Theory Study
Kinetic Investigation by Batch Processing of Film Growth during the Electrodeposition of Titanium from Ethaline
Performance Study of Nickel Oxide Graphite Felts as Electrode Materials for Ferrochromium Flow Batteries
Kinetic Investigation by Batch Processing of Film Growth during the Electrodeposition of Titanium from Ethaline
Exotic Molecules and Clusters
Kinetic Investigation by Batch Processing of Film Growth during the Electrodeposition of Titanium from Ethaline
Insights on Regioselective Synthesis of Fused Thiazoles: Density Functional Theory Calculations, Local Reactivity Indices, and Molecular Electrostatic Potential Analysis
Kinetic Investigation by Batch Processing of Film Growth during the Electrodeposition of Titanium from Ethaline
Structure‐Guided Identification and Evaluation of Epalrestat and Ranirestat‐Like Compounds Against Aldose Reductase: Therapeutic Management of Diabetic Neuropathy