Transparent organic photodiodes for high-detectivity CMOS image sensors

Author:

Park Sungjun1,Lim Younhee2,Heo Chul-Joon2,Yun Sungyoung2,Leem Dong-Seok2,Kim Sunghan2,Choi Byoungki2,Park Kyung-Bae2ORCID

Affiliation:

1. Ajou University

2. Samsung Electronics, Co. Ltd.

Abstract

The demand for high-definition complementary metal-oxide–semiconductor (CMOS) image sensors has increased considerably over the past few years in industry as well as in academia. Here we propose transparent green-sensitive organic photodetectors (TG-OPDs) with both dark-current-based high detectivity (over 10 14 c m H z 1 / 2 W 1 at a wavelength of 550 nm under 3 V) and high responsivity ( 0.34 A W 1 under 3 V) for organic–silicon hybrid CMOS image sensors. A b a t h o c u p r o i n e : C 60 electron-transporting layer provided the fabricated TG-OPDs with a minimal junction resistivity, smooth morphology, and desirable energy level modulation, resulting in exceptional light sensitivity, a low dark current (below 10 11 A c m 2 ), and a high rectification ratio spanning 10 orders of magnitude. The TG-OPDs had high-temperature endurance (up to 150°C for 2 h) and operational stability under intense heat (above 85°C) for 50 d. We expect this performance to enable the industrialization of these TG-OPDs for optoelectronic sensor applications, such as photoplethysmography, fingerprint recognition, proximity sensing, and imaging.

Funder

Ministry of Science and ICT, South Korea

Korea Electric Power Corporation

Technology Innovation Program, Ministry of Trade, Industry & Energy, Korea

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

Reference50 articles.

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