A Flow Injection Amperometric Sensor for Nitrate Detection Based on Cu Foam/Ordered Mesoporous Carbon Modified Glassy Carbon Electrode

Author:

Junlapak Nuttakorn123,Numnuam Apon123,Nontipichet Natha1,Kangkamano Tawatchai4,Thavarungkul Panote123,Kanatharana Proespichaya123,Khumngern Suntisak12ORCID

Affiliation:

1. Center of Excellence for Trace Analysis and Biosensor Prince of Songkla University Hat Yai Songkhla 90110 Thailand

2. Division of Physical Science, Faculty of Science Prince of Songkla University Hat Yai Songkhla 90110 Thailand

3. Center of Excellence Innovation in Chemistry, Faculty of Science Prince of Songkla University Hat Yai Songkhla 90110 Thailand

4. Division of Chemistry, Faculty of Science Thaksin University, Phatthalung Campus Paphayom Phatthalung 93110 Thailand

Abstract

AbstractNitrate (NO3) contamination from agricultural and industrial waste affects environmental water quality and can cause severe diseases if consumed in drinking water. Therefore, the detection of NO3 is a necessary precaution. This work describes the development of an electrochemical sensor for NO3 detection that combines the advantages of ordered mesoporous carbon (OMC) and copper foam (Cu foam) on a glassy carbon electrode (Cu foam/OMC/GCE). The large surface area, uniform pore structure, and large pore volume of OMC supported the electrodeposition of Cu foam to create a highly porous electrocatalytic structure for NO3 reduction. Under optimal conditions, the developed electrochemical sensor exhibited linearity from 1.0 μM to 5.0 mM and a detection limit of 1.0 μM (S/N=3). Moreover, the proposed electrochemical sensor exhibited acceptable selectivity, and good stability and reproducibility. The developed sensor detected NO3 in drinking water samples with recoveries of 88.2±0.9 to 112.5±6.3 %.

Funder

National Research Council of Thailand

Publisher

Wiley

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