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We report here on a simple tyrosinase (TYR) modified electrode designed through the covalent bonding of the enzyme with poly (indole-5-carboxylic acid) (PIn5COOH) conducting polymer.
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The effect of the modified electrode design on the large area and the mechanical properties of the silicon oxide films produced from the setup were examined.
A high efficiency, large area deposition process was developed for silicon oxide films using a scale-up of plasma-enhanced chemical vapor deposition (PECVD) with an additional modified electrode design.
A novel modified electrode was designed and fabricated by linking l-Leucine capped gold nanoparticles to 1,3-propanedithiol self-assembled monolayer (SAM), on gold substrate.
Metal-organic framework (MOF) nanosheets modified electrodes are designed to inhabit Li dendrite growth with improved electrochemical performance.
According to the principle of PM-ER fluids modified electrodes are designed for increasing the adhesion of fluids to the electrodes and weakening the slide in shearing.
A polyaniline (PANI) modified electrode reactor was designed for fluoride removal from aqueous solutions.
The PCD energy efficiency and safety was improved by the modified electrode system design reducing the losses.
This method has been applied with success to design a modified electrode with a supramolecular structure.
The 5%rGO/MnFe2O44 modified electrode was successfully used to design an electrochemical sensor for H2O2 sensing and the detection limit was calculated to be 50 nM.
A stable faradaic response was observed when the enzyme modified electrode was coated with a specifically designed electrodeposition polymer layer.
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