We present here screen-printed carbon-based electrochemical (SPCE) sensors modified with ZnM x Fe 2-x O 4 (M=Cr, Bi; x=0, 1, 2). Paracetamol was used to study the electrochemical sensing performance of these newly developed sensors. We reported the sensitivity (S) and first-order kinetic rate constant (k) of 6 types of sensors while comparing their performances. High improvement has been observed in S and k compared to the bare carbon sensor. Among the new sensors, the ZnFe 2 O 4 has the highest S and k while the ZnBi 2 O 4 one shows the lowest S and k.

ZnMxFe2-xO4 (M=Cr, Bi) Nanoparticles-modified electrochemical sensors: Effect on sensitivity and first-order kinetic rate constant / Madagalam, Mallikarjun; Bartoli, Mattia; Carrara, Sandro; Tagliaferro, Alberto. - ELETTRONICO. - (2023), pp. 1-4. (Intervento presentato al convegno 2023 IEEE BioSensors Conference tenutosi a London (UK) nel 2023 July 30 - August 1) [10.1109/BioSensors58001.2023.10280910].

ZnMxFe2-xO4 (M=Cr, Bi) Nanoparticles-modified electrochemical sensors: Effect on sensitivity and first-order kinetic rate constant

Madagalam, Mallikarjun;Bartoli, Mattia;Tagliaferro, Alberto
2023

Abstract

We present here screen-printed carbon-based electrochemical (SPCE) sensors modified with ZnM x Fe 2-x O 4 (M=Cr, Bi; x=0, 1, 2). Paracetamol was used to study the electrochemical sensing performance of these newly developed sensors. We reported the sensitivity (S) and first-order kinetic rate constant (k) of 6 types of sensors while comparing their performances. High improvement has been observed in S and k compared to the bare carbon sensor. Among the new sensors, the ZnFe 2 O 4 has the highest S and k while the ZnBi 2 O 4 one shows the lowest S and k.
2023
979-8-3503-4604-6
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11583/2983095