Izvorni znanstveni članak
https://doi.org/https://doi.org/10.5599/jese.3156
Application of MWCNTs/Uio-66(Zr)-NH₂ MOF modified electrode for anodic stripping determination of Cu(II) in water samples
Mais A. Mohammed
; Department of Applied Chemistry, College of Applied Sciences, University of Technology, Iraq
*
Mustafa Abdul-Sattar Ibrahem Al-Hamid
; Energy and Renewable Energies Technology Research Center, University of Technology, Baghdad, Iraq
Dalia M. Jamil
; Chemistry Department, Science College, Al-Nahrain University, Iraq
Shaimaa B. Al-Baghdadi
; Energy and Renewable Energies Technology Research Center, University of Technology, Baghdad, Iraq
* Dopisni autor.
Sažetak
In this research, a procedure was developed for the detection of Cu(II) ions in water using a glassy carbon electrode modified with a nanocomposite of multi-walled carbon nanotubes and a zirconium-based metal-organic framework (MWCNTs/Uio-66(Zr)-NH₂ MOF/GCE). The analysis was performed by differential pulse anodic stripping voltammetry. The excellent sensitivity of the created sensor (MWCNTs/Uio-66(Zr)-NH₂ MOF/GCE) for Cu(II) determination is attributed to the synergy between the strong chelating ability of the terminal amino groups (-NH₂) on the Uio-66 (Zr)-NH₂ MOF for metal ions and the extensive surface area provided by the MWCNTs. The key parameters influencing the stripping current response of Cu(II), namely, pH, accumulation potential, and accumulation time, were systematically studied and optimized. Under optimal conditions, the stripping peak current of Cu(II) ions exhibited a linear relationship with concentration over the range of 0.001 to 10.0 μM. The limit of detection for Cu(II) ions was calculated to be 0.0005 μM. Finally, the MWCNTs/Uio-66 (Zr)-NH₂ MOF/GCE sensor was employed to determine Cu(II) ions in real water specimens, yielding acceptable recovery rates.
Ključne riječi
Heavy metal ions determination; Cu(II) ions; environmental monitoring; chemically modified electrode; voltammetric sensor
Hrčak ID:
351280
URI
Datum izdavanja:
5.5.2026.
Posjeta: 0 *