Investigating the impact of substitution on the optoelectronic properties of benzothiophenone S,S-dioxide

Abstract

A series of dyes has been synthesized from 3,5,6-tribromobenzothiophene S,S-dioxide over 3 to 5 steps, leveraging a key intermediate: 5,6-dibromobenzo[b]thiophene-3(2H)-one S,S-dioxide. This intermediate serves as a highly versatile platform due to its unique functional groups: the bromines facilitate organometallic couplings, the ketone undergoes condensations, and the methylene group positioned between the ketone and sulfone enables the introduction of conjugated systems. The synthesis follows a consistent sequence of steps, ultimately yielding dyes with absorbance in the infrared (IR) region. By tuning the donor and acceptor groups, the resulting compounds can act as either electron donors or acceptors in solar cell applications, with LUMO energy levels observed around −4 eV.

Graphical abstract: Investigating the impact of substitution on the optoelectronic properties of benzothiophenone S,S-dioxide

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Article information

Article type
Paper
Submitted
17 Jun 2025
Accepted
06 Aug 2025
First published
09 Aug 2025

New J. Chem., 2025, Advance Article

Investigating the impact of substitution on the optoelectronic properties of benzothiophenone S,S-dioxide

K. Youssef, M. Allain, C. Cougnon, E. Levillain, H. Melville, L. Sanguinet and F. Gohier, New J. Chem., 2025, Advance Article , DOI: 10.1039/D5NJ02518D

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