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The preparation, characterizations and some properties of nanocomposites to modify electrode surface for immobilizing Cyt c are highlighted.
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These results suggest that ISFET biosensor responses to creatinine can be tailored and enhanced upon carefully controlled alteration of zeolite parameters used to modify electrode surfaces.
The aptamer is immobilized on the AuNPs/MoSe2 modified electrode surface through Au S interaction.
Electropolymerization is a well-known technique used to immobilize biomaterials to the modified electrode surface.
A single-stranded DNA (ssDNA) probe was immobilized on the modified electrode surface.
Scanning electron microscopy (SEM) was used for characterization of the modified electrode surface.
The modified electrode surface is characterized by SEM-EDX, FTIR, UV vis and XPS.
Then, the PB nanoparticles were electrodeposited onto the modified electrode surface.
Specifically, the thiolated hairpin-like DNA probe was assembled onto the gold nanoparticles (nano-Au) modified electrode surface through the Ag-S interaction.
The designed immobilized DA aptamer resulted in the formation of long tunnels on modified electrode surface, while aptamer acted as gate of the tunnels.
Then, a strong initial ECL signal was obtained when the Ru-PAMAM/AuNPs complex was assembled onto the modified electrode surface.
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