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y-radiation sensor using optical and electrical properties of manganese phthalocyanine (MnPc) thick film

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journal contribution
posted on 2015-07-02, 14:17 authored by Arousian Arshak, S.M. Zleetni, KHALIL ARSHAK
Manganese phthaloyanine polymer thick films were fabricated using screenprinting techniques. The optical parameters were obtained from the analysis of the absorption spectra over a wavelength range of 385-900nm. The d.c. electrical measurements were carried out in a range of 0-30 volts. The effects of γ-radiation on the optical and the electrical properties were investigated for dosimetry applications. The optical energy band gaps of these films showed a decrease in their values with the increase in the radiation dose. The electronic transition has changed from direct allowed for the as-printed films (unexposed to γ-rays) to indirect allowed for the irradiated samples. Both the as-printed and irradiated Ag/MnPc/Ag devices demonstrated a Schottky conduction mechanism. Both the absorbance and the capacitance of the MnPc thick films displayed a highly consistent linear response to γ-ray exposure.

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Publication

Sensors;2, pp. 174-184

Publisher

MDPI

Note

peer-reviewed

Language

English

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