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Fabrication and characterization of a colorimetric sensor using EDTA-capped copper oxide nanoparticles for phenolic compound detection

dc.contributor.authorAbbasi, Mehwish Shahzad
dc.contributor.authorMemon, Umaima Saleem
dc.contributor.authorMemon, Abdul Wahab
dc.contributor.authorMemon, Murk Saleem
dc.date.accessioned2026-01-25T11:54:05Z
dc.date.issued2025-04-09
dc.description.abstractThe catalytic and antibacterial properties of metal oxide nanoparticles make them suitable contributors to the formation of new production facilities at low cost. In this study, we prepared copper oxide nanoparticles (CuONPs) via an environmentally friendly and cost-effective synthesis route. We used Ethylene diamine tetra acetic acid (EDTA) as a capping and reducing agent to synthesize copper oxide nanoparticles. Textural characterization of the prepared CuONPs was studied using advanced techniques, for example, Fourier transmission infrared (FTIR) to study the functional transition (EDTA reduction), scanning electron microscopy (SEM) to analyze the shape of CuONPs, X-ray diffraction patterns to examine the crystalline nature of the particles. CuONPs were then used to perform amperometry measurements and monitor trace amounts of isoflavone (IFs) in various industrial wastewater and phytoestrogen drugs from patients and water samples. The results show that the developed sensor has excellent analytical parameters such as high sensitivity as a sensor, uniformly distributed, controlled size, high stability at neutral pH, good selectivity (no interference), and a cost-effective method for preparing and fabricating mid-frequency sensors. In this research oxidation state and particle size of nanoparticles played a vital role in enhanced catalytic process. EDTA-CuONPs with the smallest particle size, biocompatibility, surface reactivity, uniform distribution and assembled morphology, and enhanced catalytic activity make them ideal for applications including environment monitoring, catalysis, and biosensing.
dc.description.urihttps://doi.org/10.22581/muet1982.0120
dc.description.urihttps://doaj.org/article/7f15ef1ad3f344959019157e8ba1ba3e
dc.identifier.doi10.22581/muet1982.0120
dc.identifier.eissn2413-7219
dc.identifier.endpage70
dc.identifier.issn0254-7821
dc.identifier.openairedoi_dedup___::8f1a7126b40f6b181c1bc4f189ce5e3c
dc.identifier.startpage62
dc.identifier.urihttps://hdl.handle.net/11527/51043
dc.identifier.volume44
dc.publisherMehran University of Engineering and Technology
dc.relation.ispartofMehran University Research Journal of Engineering and Technology
dc.rightsOPEN
dc.subjectTechnology
dc.subjectethylene diamine
dc.subjectScience
dc.subjectcolorimetric sensor
dc.subjectnanoparticles
dc.subjectrenewable
dc.subjectTA1-2040
dc.subjectEngineering (General). Civil engineering (General)
dc.subjectnanomaterials
dc.subjectcopper oxide
dc.titleFabrication and characterization of a colorimetric sensor using EDTA-capped copper oxide nanoparticles for phenolic compound detection
dc.typeArticle
dspace.entity.typePublication

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