Repository logo
 

Monolayer Organic Field-Effect Phototransistors: Photophysical Characterization and Modeling

Published version
Peer-reviewed

Loading...
Thumbnail Image

Change log

Abstract

Оrganic field-effect transistors (OFET) can combine photodetection and light amplification and, for example, work as phototransistors. Such organic phototransistors can be used in light-controlled switches and amplifiers, detection circuits, and sensors of ultrasensitive images. In this work, we present photophysical characterization of well-defined ultrathin organic field-effect devices with a semiconductive channel based on Langmuir-Blodgett monolayer film. We observe clear generation of photocurrent under illumination with a modulated laser at 405 nm. The increase of photocurrent with the optical modulation frequency indicates the presence of defect states serving as traps for photogenerated carriers and/or the saturation of charge concentration in the thin active layer. We also propose a simple one-dimensional numerical model of a photosensitive OFET. The model is based on the Poisson, current continuity and drift-diffusion equations allows future evaluation of the photocurrent generation mechanism in the studied systems.

Description

Journal Title

Proceedings of SPIE Organic Photovoltaics XVII

Conference Name

SPIE Organic Photonics + Electronics, 2016

Journal ISSN

0277-786X
1996-756X

Volume Title

9942

Publisher

SPIE

Rights and licensing

Except where otherwised noted, this item's license is described as http://www.rioxx.net/licenses/all-rights-reserved
Sponsorship
JZ wants to thank China Scholarship Council for supporting PhD studies. AAB is Royal Society University Research Fellow. The research was supported by UK-Russia International Collaborations Grant by Royal Society (IE150071) and Russian Foundation for Basic Research (15-53-10070 KO_а).