DocumentCode
3338872
Title
Application of a heterojunction organic photodiode to radiation measurement
Author
Takada, Eiji ; Inoue, Akihiro ; Imai, Hideyuki ; Okada, Hiroyuki ; Naka, Shigeki ; Kawarabayashi, Jun
Author_Institution
Toyama Nat. Coll. of Technol., Toyama, Japan
fYear
2009
fDate
Oct. 24 2009-Nov. 1 2009
Firstpage
1295
Lastpage
1299
Abstract
Organic optical photodiodes (OPDs) have attracted considerable interest in fields using photonic devices because they present the potential for use as flexible photodetectors for large areas. To elucidate their applicability to radiation measurements, OPDs with a classical heterojunction structure were fabricated and used for X-ray measurements. The device, whose structure was ITO (150 nm)/ ¿-NPD (50 nm) / td-PTC (50 nm, 110 nm) / Al (80 nm) with sensing area of 2 mm à 2 mm, showed rectifying properties under forward and reverse voltage. Under irradiation of white light with intensity of 100 mW/cm2, the measured current was 103-104 times larger than the dark current. We conducted X-ray irradiation experiments, revealing that X-rays increased the current, although some problems persist, such as low photon-to-current conversion efficiency. At acceleration voltage of 200 kV and tube current of 2 mA, the current increased to about 40 pA from about 5 pA in a dark condition. The X-ray-induced current increased concomitantly with increasing X-ray tube current, although the curve showed a saturating tendency. Subsequently, X-ray shielding experiments with Cu plates and X-ray intensity profile measurements were conducted; results show that the OPDs functioned as a radiation detector. An inorganic scintillator on the OPD enhanced the X-ray-induced current, thereby demonstrating the possibility of a combined system of OPD and usual scintillating material as a new radiation detector. Although further study is necessary for elucidating X-ray-induced processes in devices and for enhancing their charge collection efficiency, we can conclude that OPD can be useful as a new radiation detector.
Keywords
photodetectors; photodiodes; radiation detection; semiconductor counters; solid scintillation detectors; X-ray intensity profile measurements; X-ray irradiation experiments; X-ray shielding experiments; X-ray tube current; X-ray-induced current; acceleration voltage; charge collection efficiency; classical heterojunction structure; dark condition; dark current; forward voltage; heterojunction organic photodiode; inorganic scintillator; low photon-to-current conversion efficiency; organic optical photodiodes; photodetectors; photonic devices; radiation detector; radiation measurement; rectifying properties; reverse voltage; scintillating material; sensing area; white light irradiation; Current measurement; Heterojunctions; Indium tin oxide; Optical devices; Optical saturation; Optical sensors; Photodetectors; Photodiodes; Radiation detectors; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Nuclear Science Symposium Conference Record (NSS/MIC), 2009 IEEE
Conference_Location
Orlando, FL
ISSN
1095-7863
Print_ISBN
978-1-4244-3961-4
Electronic_ISBN
1095-7863
Type
conf
DOI
10.1109/NSSMIC.2009.5402358
Filename
5402358
Link To Document