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The results indicate that all modified electrodes show the enhanced reduction peak currents.
The modified electrodes show excellent electrocatalytic activity toward hydrogen peroxide reduction at a reduced overpotential.
Also the results of modified electrodes show that j does not decrease, but increases with time, and compare to CPE the current densities of HER on modified electrodes are considerably greater.
For all electrodes the electroactive group immobilized successfully on deposited MCM-41 thin film and all of the constructed modified electrodes show the adequate and relatively stable currents.
Polarization curves of iron modified electrodes show increased protection against corrosion, particularly in the presence of 3,5-DMBD in the corrosion medium.
The GNS/NiO/DNA hybrids show enhanced electron transfer in the electrocatalytic reaction process, and accordingly, such hybrids modified electrodes show good sensing performance towards glucose and are characterized by large detection ranges, short response periods, low detection limit and high sensitivity and stability.
Similar(54)
Cationic dye clay modified electrodes and anionic dye clay modified electrodes showed different electrochemical behavior.
All the modified electrodes showed improved catalytic activities than the unmodified electrodes towards nitrite ions electrooxidation.
The reduction potential (Ep) of dioxygen at chemically modified electrodes shows dependence on pH.
The simple flame annealing of the modified electrodes showed poor reproducibility.
Surface electrochemical parameters of the modified electrodes showed that these MPc-SAMs are densely packed with flat orientations.
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