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An Electrochemical Dopamine Assay with Cobalt Oxide Palatinose Carbon Dots.

Authors :
Nepal, Ram Chandra
Seven, Elif S.
Leblanc, Roger M.
Chusuei, Charles C.
Source :
Molecules; Jan2025, Vol. 30 Issue 2, p413, 11p
Publication Year :
2025

Abstract

Elevated dopamine (DA) levels in urine denote neuroblastoma, a pediatric cancer. Saccharide-derived carbon dots (CDs) were applied to assay DA detection in simulated urine (SU) while delineating the effects of graphene defect density on electrocatalytic activity. CDs were hydrothermally synthesized to vary graphene defect densities using sucrose, raffinose, and palatinose, depositing them onto glassy carbon electrodes (GCEs). Co<subscript>3</subscript>O<subscript>4</subscript> nanoparticles (NPs) were encapsulated by the CDs. Cyclic (CV) and linear sweep (LSV) voltammetry measurements were obtained, drop-casting the CDs onto GCEs and measuring DA in a phosphate-buffer solution (pH = 7). DA had an oxidation peak at +0.2 V with SucCDs, with the highest current correlating with the highest defect density. PalCD-Co<subscript>3</subscript>O<subscript>4</subscript> exhibited the largest signal for DA detection in simulated urine (SU) using the oxidation peak at +0.5 V; the composite had a lower defect density compared to SucCD-Co<subscript>3</subscript>O<subscript>4</subscript>. The Co<subscript>3</subscript>O<subscript>4</subscript>-PalCDs had a DA detection range of 1 to 90 µM with an LOD of 0.88 μM in SU. SEM-EDX analysis of the electrode surface revealed semi-spherical structures with an average particle diameter of 80 ± 19 nm (n = 347) with PalCDs decorating the Co<subscript>3</subscript>O<subscript>4</subscript> NPs. XRD characterization showed the incorporation of PalCD and Co<subscript>3</subscript>O<subscript>4</subscript> within the composite. XPS showed electron density donation from the PalCD to Co<subscript>3</subscript>O<subscript>4</subscript>. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14203049
Volume :
30
Issue :
2
Database :
Complementary Index
Journal :
Molecules
Publication Type :
Academic Journal
Accession number :
182473710
Full Text :
https://doi.org/10.3390/molecules30020413