Title :
High-Performance Organic Optocouplers Based on an Organic Photodiode With High Blue Light Sensitivity
Author :
Dong Li ; Guifang Dong ; Lian Duan ; Deqiang Zhang ; Liduo Wang ; Yong Qiu
Author_Institution :
Dept. of Chem., Tsinghua Univ., Beijing, China
Abstract :
Based on blue light-sensitive interfacial fullerene/4, 4\´, 4"-tris {N,-(3-methylphenyl)-N-phenylamino} triphenylamine ( C60/m-MTDATA) heterojunction organic photodiode (OPD) and deep blue organic light-emitting diode (462 nm), a high-performance organic optocoupler (OOC) was developed. The OOC behaved a maximum photoresponse of 130 mA/W at 6 V OPD bias, which could be markedly higher than some commerical inorganic optocouplers. We believed the high performance of the OPD and OOC was mainly attributed to the selection of high-mobility materials, proper matching of energy levels, and large energy level offset (2.6 eV) at C60/m-MTDATA interface. The maximum light/dark current ratio and current transfer ratio (CTR) of 5×104 and 0.82% were achieved, respectively. To the best of our knowledge, the CTR is almost the highest reported in OOCs and this sort of OOC could be used for commercial applications.
Keywords :
fullerenes; opto-isolators; organic light emitting diodes; photodiodes; CTR; OOC; OPD; blue light-sensitive interfacial fullerene; current transfer ratio; deep blue organic light-emitting diode; electron volt energy 2.6 eV; energy level offset; heterojunction organic photodiode; high-mobility materials; light-dark current ratio; organic optocoupler; voltage 6 V; wavelength 462 nm; Dark current; Energy states; Heterojunctions; Indium tin oxide; Insulators; Organic light emitting diodes; Photodiodes; Blue light sensitivity; high current transfer ratio; organic optocouplers (OOC); organic photodiode (OPD);
Journal_Title :
Electron Device Letters, IEEE
DOI :
10.1109/LED.2013.2274522