Literature DB >> 33164496

Green-Light-Selective Organic Photodiodes with High Detectivity for CMOS Color Image Sensors.

Younhee Lim1, Sungyoung Yun1, Daiki Minami2, Taejin Choi1, Hyesung Choi1, Jisoo Shin1, Chul-Joon Heo1, Dong-Seok Leem1, Tadao Yagi3, Kyung-Bae Park1, Sunghan Kim1.   

Abstract

Stacked structures employing wavelength-selective organic photodiodes (OPDs) have been studied as promising alternatives to the conventional Si-based image sensors because of their color constancy. Herein, novel donor (D)-π-acceptor (A) molecules are designed, synthesized, and characterized as green-light-selective absorbers for application in organic-on-Si hybrid complementary metal-oxide-semiconductor (CMOS) color image sensors. The p-type molecules, combined with two fused-type heterocyclic donors and an electron-accepting unit, exhibit cyanine-like properties that are characterized by intense and sharp absorption. This molecular design leads to improved absorption properties, thermal stability, and higher photoelectric conversion compared to those of a molecular design based on a nonfused ring. A maximum external quantum efficiency of 66% (λmax = 550 nm) and high specific detectivity (D*) of 8 × 1013 cm Hz1/2/W are achieved in an OPD consisting of a bulk heterojunction blend with two transparent electrodes on both sides. Finally, the green-light-detection capability of the narrow-band green-selective OPD is demonstrated by the optical simulation of an organic-on-Si hybrid, stacked-type, full-color photodetector comprising the green-light-selective OPD and a bottom Si photodiode with only blue and red color filters. Based on this molecular design, further optimization of the OPDs can allow the development of various optoelectronic sensors including 3D-stacked image sensors with enhanced sensitivities to replace the conventional Si-based CMOS image sensors.

Entities:  

Keywords:  donor−acceptor material; narrow-band absorption; organic image sensor; organic photodiode; spectral detectivity

Year:  2020        PMID: 33164496     DOI: 10.1021/acsami.0c14237

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  1 in total

1.  Light-intensity-dependent photoresponse time of organic photodetectors and its molecular origin.

Authors:  Chiara Labanti; Jiaying Wu; Jisoo Shin; Saurav Limbu; Sungyoung Yun; Feifei Fang; Song Yi Park; Chul-Joon Heo; Younhee Lim; Taejin Choi; Hyeong-Ju Kim; Hyerim Hong; Byoungki Choi; Kyung-Bae Park; James R Durrant; Ji-Seon Kim
Journal:  Nat Commun       Date:  2022-06-29       Impact factor: 17.694

  1 in total

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