Search results for "electrodeposition"
showing 10 items of 104 documents
Electrodeposition and Caracterization of Nanostructured Ni and Ni-IrO2
2013
Electrodeposition from molybdate aqueous solutions: a preliminary study
2013
The electrochemistry of molybdenum (Mo) and its oxides is very important for several applications in electrocatalysis,batteries,sensors and in particular for CIGS-based solar cells,where metal Mo is used as back contact.Properties and the fabrication method of Mo films are of fundamental importance,because they could induce significant changes in solar cell performances.The most important issues in the electrochemical behaviour of Mo are the nature and stability of its surface oxides,which are strongly dependent on deposition bath pH.Ivanova et al. (2006) reported that it is possible to accomplish the cathodic reduction of molybdate ions to metallic Mo from electrolytes containing HF.The ad…
Fabrication of CIS and CIGS nanowires for application in micro-photovoltaic device
2009
ULTRAFAST LEAD ACID BATTERIES USING NANOSTRUCTURED ELECTRODES
2012
Method for Producing an Electrode with Nanometric Structure and Electrode with Nanometric Stucture
2012
Fabrication and Characterization of Different Nanostructures
2007
Fabrications of Nanostructures And Nano-Structured Devices Using Electrochemical Methods
2013
Redshift of absorption threshold of TiO2 Nanotubes due to Cu2O electrodeposition
2013
Thin Films of Semiconductors for Flexible Solar Cells: Electrochemical Deposition and Characterization
2011
Nanostructured Lead Electrodes with Reduced Graphene Oxide for High-Performance Lead–Acid Batteries
2022
Nanostructured Pb electrodes consisting of nanowire arrays were obtained by electrodeposition, to be used as negative electrodes for lead–acid batteries. Reduced graphene oxide was added to improve their performances. This was achieved via the electrochemical reduction of graphene oxide directly on the surface of nanowire arrays. The electrodes with and without reduced graphene oxide were tested in a 5 M sulfuric acid solution using a commercial pasted positive plate and an absorbed glass mat separator in a zero-gap configuration. The electrodes were tested in deep cycling conditions with a very low cut-off potential. Charge–discharge tests were performed at 5C. The electrode wi…