0000000000303524

AUTHOR

Sivapregasen Naidoo

showing 6 related works from this author

Investigation of Activities for Pt-M Bimetallic Nanoparticles Catalysts on the Oxygen Reduction Reaction

2015

Bi-metallic Pt3Ni/C and Pt3Co/C electrocatalysts were successfully synthesized by a solvent free chemical vapour deposition method with a narrow particle size distribution. The results showed that the electrochemical surface area was increased by adding the additional Ni or Co to a pure Pt catalyst. Pt3Ni/C catalyst exhibited a significant enhancement of oxygen reduction reaction activity. The catalysts were characterized by EDS, XRD, HRTEM and electrochemical activity was determined using cyclic voltammetry.

inorganic chemicalsMaterials scienceChemical engineeringNanoparticleChemical vapor depositionCyclic voltammetryCondensed Matter PhysicsElectrocatalystHigh-resolution transmission electron microscopyElectrochemistryBimetallic stripElectronic Optical and Magnetic MaterialsCatalysisFerroelectrics
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Optimization of the enzyme power source for a nano drug delivery system fuelled by glucose in blood plasma

2019

A unique in vivo electrical pulse generator to improve membrane permeability for drugs and simultaneously facilitate self-powered nano devices for nano drug delivery systems (NDDS) was identified. The use of an unsupported biological catalyst component of the power supply was aimed at the NDDS instead of a conventional membrane electrode assembly (MEA). Self-powered carriers of drugs and prodrugs with improved controlled release capability to target areas using substrate available in biological matrices such as glucose in blood is envisaged. The experimental application implemented prototype designed chambers allowing the entry of premixed precursors and low ohm resistance due the absence o…

0106 biological sciencesMaterials sciencebiologyMembrane permeabilityOpen-circuit voltageDiffusionMembrane electrode assemblySubstrate (chemistry)Proton exchange membrane fuel cell02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesControlled releaseChemical engineering:NATURAL SCIENCES:Physics [Research Subject Categories]biology.proteinGlucose oxidase0210 nano-technology010606 plant biology & botanyIOP Conference Series: Materials Science and Engineering
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Glucose oxidase as a biocatalytic enzyme-based bio-fuel cell using Nafion membrane limiting crossover

2013

A novel combination for an Enzyme-based Biofuel cell included a Nafion membrane as an ion transporter that maintained a working cell charge and inhibited membrane degradation. The prototype cell chamber used oxygen (O2) in the cathode cell and glucose in the anode. The Nafion membrane stability studied here was evidently in the region of 0% loss of conductivity as the charge was constant and increased after the addition of glucose. The prototype cell chamber used NaCl in the cathode cell and glucose oxidase (GOx) in the anodic chamber was successfully studied for membrane stability showed in this study no evidence of poisoning from membrane leakage in a controlled pH environment. There was …

ChromatographybiologyChemistryCellchemistry.chemical_elementConductivityOxygenCathodelaw.inventionAnodeMembranemedicine.anatomical_structureChemical engineeringlawbiology.proteinmedicineGlucose oxidaseIon transporterIOP Conference Series: Materials Science and Engineering
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Precipitation and calcination synthesis methods forming nano-sized platinum catalytic particles for methanol and hydrogen oxidation

2013

Under varying experimental conditions of calcination and precipitation reactions, different particle sizes and levels of platinum on carbon supported (Pt/C) catalysts were obtained. Rapid precipitation following a chemical reaction ensured formation of nano-sized catalytic particles using super-saturated concentrations under controlled conditions was a significant contribution in understanding the synthesis process and how it relates to an increased number of catalytic reaction sites ultimately providing superior electrochemical (EC) activity. These conditions influenced nucleation and growth rates of the catalytic particles. The super-saturation concentrations of the reactants in the react…

ChemistryPrecipitation (chemistry):NATURAL SCIENCES::Chemistry [Research Subject Categories]Inorganic chemistryNucleationchemistry.chemical_elementChemical reactionPlatinum on carbonIndustrial and Manufacturing Engineeringlaw.inventionCatalysislawParticleGeneral Materials ScienceCalcinationElectrical and Electronic EngineeringPlatinum
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Synthesis highly active platinum tri-metallic electrocatalysts using "one-step" organometallic chemical vapour deposition technique for methanol oxid…

2012

A simple solvent free method for the synthesis of tri-metallic platinum electrocatalysts on carbon nanotubes is presented. By investigating the platinum alloy electrocatalysts, it was showed that the additional metals of platinum alloys could reduce the metal particle sizes and produce larger chemical-active surface area, as well as the higher methanol oxidation activity of the catalysts. The organometallic chemical vapour deposition method was successfully applied to produce multiple samples of PtRuFe, PtRuCu and PtRuV. The electrocatalysts were characterized by ICP, XRD, HRTEM and the catalytic activity was determined by cyclic voltammetry (CV).

Materials scienceInorganic chemistryAlloychemistry.chemical_elementChemical vapor depositionCarbon nanotubeengineering.materialCatalysislaw.inventionMetalchemistry.chemical_compoundchemistrylawvisual_artvisual_art.visual_art_mediumengineeringMethanolCyclic voltammetryPlatinumIOP Conference Series: Materials Science and Engineering
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Function of titanium oxide coated on carbon nanotubes as support for platinum catalysts

2015

This study describes the outcome of the synthesis of laboratory-made (HM) Pt monometallic, binary and ternary catalysts supported on TiO2/CNT (carbon nanotubes) and based on using the dry-mix method of organometallic chemical vapor deposition (OMCVD). These multicomponent catalysts were investigated and compared with commercial Johnson Matthey (JM) catalysts for electrochemical applications.

Materials sciencechemistry.chemical_elementCarbon nanotubeChemical vapor depositionCondensed Matter PhysicsElectrochemistryAtomic and Molecular Physics and OpticsCatalysisTitanium oxidelaw.inventionchemistryChemical engineeringlawCarbon nanotube supported catalystPlatinumTernary operationMathematical PhysicsPhysica Scripta
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