Conductive polymer nanocomposites are attracting increasing interest for their potential in advanced optoelectronics, sensing, and energy applications, owing to their tunable electrical and optical properties. In this study, we present the fabrication and characterisation of novel PANI-CSA nanocomposite films doped with cobalt (Co), nickel (Ni), and a combination of Co–Ni nanoparticles. These materials were synthesised via chemical polymerisation in a camphor sulfonic acid (CSA) solution. Structural, optical, and electrical properties were systematically examined using four-point probe measurements, X-ray diffraction, scanning electron microscopy, and ultraviolet–visible (UV–Vis) spectroscopy. Our findings demonstrate that doping with Co and Ni nanoparticles reduces the optical bandgap, enhances electrical conductivity, and improves UV–visible light absorption. Theoretical modelling of surface plasmon resonance using the Kretschmann configuration further revealed that co-doping with Co and Ni significantly enhances sensitivity, positioning these films as promising candidates for plasmonic biosensing. The integration of dual-metal doping with CSA protonation in PANI offers an innovative approach for developing multifunctional nanocomposites tailored for advanced photonic and sensing applications.
2025-08
Physica B: Condensed Matter
(Volume : 651)
Effect of AlNPs distribution on the optical and electrical properties of PANI/AlNPs nanocomposite films
Polyaniline (PANI)/Aluminium nanoparticles (AlNPs) nanocomposite films were designed and synthesized for optoelectronic applications. Structural, morphological, optical, electronic, and electrical properties of the PANI/AlNPs nanocomposite films were studied for various AlNPs concentrations. As AlNPs concentration increases from 0 to 32 wt% the bandgap energy decreases monoexponentially from 3.97 eV to 3.84 and the refractive index increases continuously from 1.53 to 1.63 at 550 nm. However, the monoexponential decay of the bandgap energy cannot describe the PANI/AlNPs films behaviour for AlNPs concentrations greater than 32 wt% due to AlNPs percolation. The electrical conductivity increases from 0.11 to 16.10 μS cm−1 in the above AlNPs range, being the trend fitted to a sigmoidal function, which passes through three regions: insulating, percolation, and electrical conductive zones. AlNPs are …
2023-02
Journal of University of Zakho
(Issue : 2)
(Volume : 4)
Design and simulation of a PI controller system with frequency response
Design and simulation of a PI controller system with frequency response
2021-08
Science Journal of University of Zakho
(Issue : 2)
(Volume : 6)
CARBON MONOXIDE AND CARBON DIOXIDE LEVEL DISTRIBUTION OF ROJHELAT CAFE IN DUHOK CITY
There are a few data of toxic concentrations and their distribution of cigarrete and Shisha smoking in Café. Therefore, the aim of
this study is to know the concentration and the distribution of both CO and CO2 gases in Rojhelat Café in Duhok city. Both gases
have been measured in different positions of Café before opening and until closing the place. Furthermore, the distributions of
gases at different places and different elevation have been measured. The results showed that the effect of shisha on producing
gases is more than cigarrete. We found that the toxic gases in Café were too high. This study will help the Café manufacture how
to design the building such Café for air conveyor and condition.
2018-06
Training Course
2021-06-10,2021-07-01
Constructing Surface Plasmon Resonance SPR and synthesising associated polymer-metal oxide for boosting SPR signal
Leibniz Institute für Analytische Wissenschaften-ISAS-e.V, Dortmunds, Germany