Screen-Printed Electrode Modified with Silver Nanoparticles (AgNP)Polydopamine (PDA)Reduced Graphene Oxide (RGO)
Francis Angelo Dominguez1, Rowell Jones Matabilas1, Jan Pierre Rizalino Montecillo1
1Institute of Chemistry, College of Science, University of the Philippines Diliman, NCR Philippines, Quezon City 1101, Philippines.
Abstract:
A uric acid (UA) sensor was developed through the modification of carbon screen-printed electrodes (SPE) with a nanocomposite of silver nanoparticles (AgNP), polydopamine (PDA), and reduced graphene oxide (RGO). The AgNP-PDA-RGO nanocomposite was characterized by ATR-FTIR, UV-vis, Raman, and SEM-EDX to confirm the synthesis of the nanocomposite. Electrocatalytic activity was investigated by measuring specific capacitance and peak current using cyclic voltammetry using a Fe-(CN)6 -3/-4 probe. Analytical performance of the AgNP-PDA-RGO modified SPE for UA was investigated by using differential pulse voltammetry in acetate buffer (pH 4.5). Two linear ranges from 20-100 μM and 200-1000 μM were established with a limit of detection of 1.23 μM. The UA signal was repeatable (relative standard deviation (RSD) = 5.00%, n = 10) on a single modified electrode and reproducible across multiple electrodes (RSD = 0.95%, n = 3), and the signal was stable after 28 days (only 0.41% change from initial signal, n = 3). The AgNP-PDA-RGO sensor was also used for the measurement of UA in lab-prepared urine samples and tested in the presence of organic interferents such as ascorbic acid, dopamine, and glucose.
More Related Videos
10:02Quantitative SERS Detection of Uric Acid via Formation of Precise Plasmonic Nanojunctions within Aggregates of Gold Nanoparticles and Cucurbit[n]uril
Published on: October 3, 2020
10:48Electrochemical Preparation of Poly3,4-Ethylenedioxythiophene Layers on Gold Microelectrodes for Uric Acid-Sensing Applications
Published on: July 28, 2021
