Publication | Open Access
Indirect X-ray Detectors Based on Inkjet-Printed Photodetectors with a Screen-Printed Scintillator Layer
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Citations
47
References
2018
Year
EngineeringElectron-beam LithographyOrganic ElectronicsInkjet-printed PhotodetectorsOrganic PhotodetectorsScreen-printed Scintillator LayerX-ray FluorescenceX-ray ImagingChemical EngineeringElectronic DevicesBeam LithographyPhotodetectorsIndirect X-ray DetectorsPrinted ElectronicsInstrumentationRadiation ImagingNuclear MedicineRadiologyHealth SciencesMaterials ScienceElectrical EngineeringRadiation DetectionScintillatorX-ray Free-electron Laser3D PrintingFlexible ElectronicsApplied PhysicsInkjet PrintingX-ray OpticOptoelectronicsX-ray Radiation
Organic photodetectors (PDs) based on printing technologies will allow to expand the current field of PD applications toward large-area and flexible applications in areas such as medical imaging, security, and quality control, among others. Inkjet printing is a powerful digital tool for the deposition of smart and functional materials on various substrates, allowing the development of electronic devices such as PDs on various substrates. In this work, inkjet-printed PD arrays, based on the organic thin-film transistor architecture, have been developed and applied for the indirect detection of X-ray radiation using a scintillator ink as an X-ray absorber. The >90% increase of the photocurrent of the PDs under X-ray radiation, from about 53 nA without the scintillator film to about 102 nA with the scintillator located on top of the PD, proves the suitability of the developed printed device for X-ray detection applications.
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