Highly dispersed rhodium particles on multi-walled carbon nanotubes for the electrochemical reduction of nitrate and nitrite ions in acid medium
-
Add time:07/18/2019 Source:sciencedirect.com
The rhodium particles can be electrodeposited on a glassy carbon electrode, previously modified with multi-walled carbon nanotubes (MWCNTs), by voltage cycling between 0.4 V and–0.3 V vs. SCE (30 cycles) in 50 mM H2SO4 containing 4.0 mM RhCl3. This proposed modified electrode is useful to facilitate the electrocatalytic reduction of nitrate and nitrite ions in acid medium. The mechanism of the electrocatalytic reduction of nitrate and nitrite ions in the hydrogen region of potentials was critically considered using voltammetric and DC/pulsed amperometric detection techniques. The GC/MWCNT-Rh electrode shows interesting sensitivity and temporal reproducibility towards nitrite and nitrate reduction under constant and pulsed applied potentials, respectively.
We also recommend Trading Suppliers and Manufacturers of Rhodium(III) nitrate (cas 10139-58-9). Pls Click Website Link as below: cas 10139-58-9 suppliers
Prev:Extraction and separation of palladium(II), platinum(IV), gold(III) and rhodium(III) using piperidine-based extractants
Next:Electrochemical oxidation of urea on nickel-rhodium nanoparticles/carbon composites) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Polymeric optical sensors for selective and sensitive nitrite detection using cobalt(III) corrole and rhodium(III) porphyrin as ionophores07/25/2019
- Half-sandwich Ir(III) and Rh(III) 2,2′-dipyridylamine complexes: Synthesis, characterization and in vitro cytotoxicity against the ovarian carcinoma cells07/24/2019
- A disposable rhodium nanoparticle-modified screen-printed sensor for direct determination of bromide anions07/23/2019
- Liquid–liquid extraction/separation of platinum(IV) and rhodium(III) from acidic chloride solutions using tri-iso-octylamine07/22/2019
- Effect of rhodium on the water–gas shift performance of Fe2O3/ZrO2 and CeO2/ZrO2: Influence of rhodium precursor07/20/2019
- Separation of Pt(IV), Pd(II), Ru(III) and Rh(III) from model chloride solutions by liquid-liquid extraction with phosphonium ionic liquids07/21/2019
- Electrochemical oxidation of urea on nickel-rhodium nanoparticles/carbon composites07/19/2019
- Extraction and separation of palladium(II), platinum(IV), gold(III) and rhodium(III) using piperidine-based extractants07/17/2019
- Structure and properties of a rhodium(III) pentanitrato complex embracing uni- and bidentate nitrato ligands07/16/2019
-
Health and Chemical more >


