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September 2, 2026Advanced Materials0 citations

Singlet Fission as an Exciton-Management Platform for Optoelectronic Materials

Singlet Fission as an Exciton‐Management Platform for Next‐Generation Optoelectronic Materials

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Authors

LXLijuan XueHWHaimei WangLSLei Shen

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Overview

Review demonstrates mechanisms and molecular design of singlet fission in functional materials, highlighting opportunities for next-generation optoelectronic and quantum technologies.

Key Points

  • Review the fundamental mechanisms, molecular design principles, and device-level applications of singlet fission as an exciton-management strategy in optoelectronic and quantum systems.
  • Synthesized theoretical frameworks and empirical literature on singlet fission photophysics and molecular energetic requirements.
  • Analyzed multiscale structure-property relationships linking supramolecular packing, triplet-pair separation, transport, and interface dynamics across diverse devices.
  • Characterized the photophysical pathways that govern the spin-conserving conversion of one photoexcited singlet exciton into two triplet excitons.
  • Identified critical roles of molecular packing and external stimuli in controlling triplet separation, transport, and charge transfer efficiency.
  • Outlined key opportunities and bottlenecks across photovoltaics, quantum light sources, and photocatalysis, emphasizing machine-learning-guided material discovery.

Cite This Study

Xue et al. (2026) studied this question.

synapsesocial.com/papers/6a97e275c562ede874ec6a1bhttps://doi.org/10.1002/adma.74838
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