Polyacrylonitrile (PAN) nanofibers doped with varying concentrations of perovskite praseodymium ferrite (PrFeO3) nanoparticles synthesized by calcination were successfully manufactured using a simple electrospinning process. The nanofibers were coated with layers of polyaniline-titanium dioxide (PANi-TiO2) combination using an air brush. The structure, morphology, and electrical characteristics of the nanoparticles and nanofibers were analyzed using SEM, FT-IR, and a multimeter. The results indicated that the produced nanofibers exhibited a strong in vitro interaction and selectivity against acetone gas, a biomarker of diabetes. These findings suggest that PrFeO3-doped nanofibers hold promise as potential candidates for acetone gas sensors in non-invasive diabetes monitoring.
Keywords
Abstract
Polyacrylonitrile (PAN) nanofibers doped with varying concentrations of perovskite praseodymium ferrite (PrFeO3) nanoparticles synthesized by calcination were successfully manufactured using a simple electrospinning process. The nanofibers were coated with layers of polyaniline-titanium dioxide (PANi-TiO2) combination using an air brush. The structure, morphology, and electrical characteristics of the nanoparticles and nanofibers were analyzed using SEM, FT-IR, and a multimeter. The results indicated that the produced nanofibers exhibited a strong in vitro interaction and selectivity against acetone gas, a biomarker of diabetes. These findings suggest that PrFeO3-doped nanofibers hold promise as potential candidates for acetone gas sensors in non-invasive diabetes monitoring.
@article{2023,title={Detecting acetone from breath using a PrFeO3-doped PANi/TiO2-coated PAN nanofiber sensor for non-invasive diabetic diagnosis},abstractNode={
Polyacrylonitrile (PAN) nanofibers doped with varying concentrations of perovskite praseodymium ferrite (PrFeO3) nanoparticles synthesized by calcination were successfully manufactured using a simple electrospinning process. The nanofibers were coated with layers of polyaniline-titanium dioxide (PANi-TiO2) combination using an air brush. The structure, morphology, and electrical characteristics of the nanoparticles and nanofibers were analyzed using SEM, FT-IR, and a multimeter. The results indicated that the produced nanofibers exhibited a strong in vitro interaction and selectivity against acetone gas, a biomarker of diabetes. These findings suggest that PrFeO3-doped nanofibers hold promise as potential candidates for acetone gas sensors in non-invasive diabetes monitoring.
},author={Nesibe Yeşildağ-Ömer Faruk Ünsal -Ramazan Gömeç -Ayşe Çelik Bedeloğlu },year={2023},journal={Journal of Innovative Engineering and Natural Science}}
Nesibe Yeşildağ-Ömer Faruk Ünsal -Ramazan Gömeç -Ayşe Çelik Bedeloğlu . 2023 . Detecting acetone from breath using a PrFeO3-doped PANi/TiO2-coated PAN nanofiber sensor for non-invasive diabetic diagnosis . Journal of Innovative Engineering and Natural Science.DOI:10.29228/JIENS.70059
Nesibe Yeşildağ-Ömer Faruk Ünsal -Ramazan Gömeç -Ayşe Çelik Bedeloğlu .(2023).Detecting acetone from breath using a PrFeO3-doped PANi/TiO2-coated PAN nanofiber sensor for non-invasive diabetic diagnosis.Journal of Innovative Engineering and Natural Science
Nesibe Yeşildağ-Ömer Faruk Ünsal -Ramazan Gömeç -Ayşe Çelik Bedeloğlu ,"Detecting acetone from breath using a PrFeO3-doped PANi/TiO2-coated PAN nanofiber sensor for non-invasive diabetic diagnosis" , Journal of Innovative Engineering and Natural Science (2023)
Nesibe Yeşildağ-Ömer Faruk Ünsal -Ramazan Gömeç -Ayşe Çelik Bedeloğlu . 2023 . Detecting acetone from breath using a PrFeO3-doped PANi/TiO2-coated PAN nanofiber sensor for non-invasive diabetic diagnosis . Journal of Innovative Engineering and Natural Science . 2023. DOI:10.29228/JIENS.70059
Nesibe Yeşildağ-Ömer Faruk Ünsal -Ramazan Gömeç -Ayşe Çelik Bedeloğlu .Detecting acetone from breath using a PrFeO3-doped PANi/TiO2-coated PAN nanofiber sensor for non-invasive diabetic diagnosis. Journal of Innovative Engineering and Natural Science (2023)
Nesibe Yeşildağ-Ömer Faruk Ünsal -Ramazan Gömeç -Ayşe Çelik Bedeloğlu .Detecting acetone from breath using a PrFeO3-doped PANi/TiO2-coated PAN nanofiber sensor for non-invasive diabetic diagnosis. Journal of Innovative Engineering and Natural Science (2023)
Format:
Nesibe Yeşildağ-Ömer Faruk Ünsal -Ramazan Gömeç -Ayşe Çelik Bedeloğlu . (2023) .Detecting acetone from breath using a PrFeO3-doped PANi/TiO2-coated PAN nanofiber sensor for non-invasive diabetic diagnosis Journal of Innovative Engineering and Natural Science
Nesibe Yeşildağ-Ömer Faruk Ünsal -Ramazan Gömeç -Ayşe Çelik Bedeloğlu . Detecting acetone from breath using a PrFeO3-doped PANi/TiO2-coated PAN nanofiber sensor for non-invasive diabetic diagnosis . Journal of Innovative Engineering and Natural Science . 2023 doi:10.29228/JIENS.70059
Nesibe Yeşildağ-Ömer Faruk Ünsal -Ramazan Gömeç -Ayşe Çelik Bedeloğlu ."Detecting acetone from breath using a PrFeO3-doped PANi/TiO2-coated PAN nanofiber sensor for non-invasive diabetic diagnosis",Journal of Innovative Engineering and Natural Science(2023)