Excited-State Magneto-Optical Effects in Organic Semiconductors

Abstract

Magneto-optical effects in organic semiconductors, including magneto-photoluminescence (MPL) and magneto-electroluminescence (MEL), enable magnetic control of light emission at low fields and room temperature. This review focuses on the basic concept and recent advances on magneto-optical effects observed in organic semiconductor and devices. The underlying mechanisms for spin-dependent excited-state processes are briefly introduced for the MPL and MEL effects. Singlet-triplet conversion is highlighted in a series of materials, including conjugated molecules, organic-metal complexes, exciplex and acenes, to establish the structure-property relationship between molecular systems and MPL/MEL performance. Emerging applications based on MPL/MEL are summarized, such as magnetic field sensing, magnetically tuned light-emitting devices, and on-chip integrated magneto-optical devices. It benefits for the rational design and fabrication of spin-optoelectronic materials and devices, and promotes the combination of organic spintronics and photonics beyond the traditional inorganic semiconductors.

Article information

Article type
Review Article
Submitted
19 Mar 2026
Accepted
20 May 2026
First published
26 May 2026

Chem. Commun., 2026, Accepted Manuscript

Excited-State Magneto-Optical Effects in Organic Semiconductors

S. Zhang, Q. Chang, J. Zhang, L. Chen, Y. Yan and C. Zhang, Chem. Commun., 2026, Accepted Manuscript , DOI: 10.1039/D6CC01662F

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