Non-Enzymatic L-Tyrosine Detection Based on PEDOT/ZrO2/rGO Composite
Wilson, J.
| Autor: | Wilson, J. |
|---|---|
| Veröffentlichungsdatum: | 31.01.2020 |
| EAN: | 9786200549235 |
| Sprache: | Englisch |
| Seitenzahl: | 60 |
| Produktart: | Kartoniert / Broschiert |
| Verlag: | LAP LAMBERT Academic Publishing |
| Untertitel: | Excellent Selective Biosensor |
Produktinformationen "Non-Enzymatic L-Tyrosine Detection Based on PEDOT/ZrO2/rGO Composite"
A novel strategy to fabricate L- Tryosine sensors was developed based on poly(3,4-ethylene dioxythiophene) PEDOT/ZrO2/reduced graphene oxide composite film on glassy carbon electrode. The PEDOT nanotubes were synthesized by using the complex of EDOT Monomer, Acetonitrile, Ammonium oxydisulphate template. Followed by thing coating of PEDOT have been performed by chemical polymerization of EDOT monomer over the ZrO2/rGO to form PEDOT / ZrO2 / rGO nanocomposite. The surface area of the PEDOT, and PEDOT/ZrO2, PEDOT/rGO, ZrO2, rGO, PEDOT / ZrO2 / rGO nanocomposite modified electrodes were investigated using cyclic voltammetry (CV). The resulting above composite was characterized by X - Ray Diffraction (XRD), cyclic voltammetry (CV), electrochemical impedance spectroscopy and linear sweep voltammetry (LSV). Choronoamperometry (CA) The nanocomposite with high surface area of PEDOT / ZrO2 / rGO nano composite film has been highly catalytic activity toward the electrochemical oxidation of L- Tyrosine.
Sie möchten lieber vor Ort einkaufen?
Sie haben Fragen zu diesem oder anderen Produkten oder möchten einfach gerne analog im Laden stöbern? Wir sind gerne für Sie da und beraten Sie auch telefonisch.
Juristische Fachbuchhandlung
Georg Blendl
Parcellistraße 5 (Maxburg)
8033 München
Montag - Freitag: 8:15 -18 Uhr
Samstags geschlossen