Electronic excitation spectra of organic semiconductor/ionic liquid interface by electrochemical attenuated total reflectance spectroscopy

Author:

Tanabe IchiroORCID,Imoto Iroha,Okaue Daijiro,Imai Masaya,Kumagai Shohei,Makita Tatsuyuki,Mitani Masato,Okamoto Toshihiro,Takeya JunORCID,Fukui Ken-ichi

Abstract

AbstractThe interface of organic semiconductor films is of particular importance with respect to various electrochemical devices such as transistors and solar cells. In this study, we developed a new spectroscopic system, namely electrochemical attenuated total reflectance ultraviolet (EC-ATR-UV) spectroscopy, which can access the interfacial area. Ionic liquid-gated organic field-effect transistors (IL-gated OFETs) were successfully fabricated on the ATR prism. Spectral changes of the organic semiconductor were then investigated in relation to the gate voltage application and IL species, and the magnitude of spectral changes was found to correlate positively with the drain current. Additionally, the Stark shifts of not only the organic semiconductor, but also of the IL on the organic semiconductor films were detected. This new method can be applied to other electrochemical devices such as organic thin film solar cells, in which the interfacial region is crucial to their functioning.

Funder

MEXT | Japan Society for the Promotion of Science

Kansai Research Foundation for Technology Promotion Yazaki Memorial Foundation for Science and Technology

Publisher

Springer Science and Business Media LLC

Subject

Materials Chemistry,Biochemistry,Environmental Chemistry,General Chemistry

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