Abstract In order to clarify the influence of the source/drain (S/D) electrodes/the active layer contact condition on the photoelectric properties of the organic phototransistor (OPT), pentacene (Pn) and copper phthalocyanine… Click to show full abstract
Abstract In order to clarify the influence of the source/drain (S/D) electrodes/the active layer contact condition on the photoelectric properties of the organic phototransistor (OPT), pentacene (Pn) and copper phthalocyanine (CuPc) based OPTs with Au or Al as S/D electrodes were fabricated. The output and transfer characteristics of OPTs were investigated in the dark and under illumination. The results indicate that high-mobility Pn-OPTs are more suitable for the use of Au electrode with low contact barrier to obtain higher photoresponsivity. And low-mobility CuPc-OPTs are more suitable for the use of Al electrode with Shottky contact for maintaining the same level of photoresponsivity while achieving a high maximum photosensitivity ( P MAX ). Compared with Au-CuPc-OPT, the improved P MAX effects of Shottky contact on Al-CuPc-OPT can be ascribed to the photon induced barrier lowering (PIBL) effect after illumination. The physical mechanism of PIBL in OPT was deduced in this paper.
               
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