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March 25, 2026Chemical ScienceOpen Access

An Experimental Perspective on Symmetry Breaking and the Singlet Fission Mechanism in Solid-State Materials

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Authors

XXXinyue XuCHChristopher R. HallTSTrevor Smith

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Overview

Experimental findings reveal how symmetry breaking enhances singlet fission in solid-state materials, indicating potential advances in solar cells.

Key Points

  • This research explores the relationship between symmetry breaking and the singlet fission mechanism in solid-state materials.
  • Experiments on various solid-state materials exhibiting singlet fission
  • Analysis of molecular properties and their influence on singlet fission efficiency
  • Observation of symmetry breaking effects during the singlet fission process
  • Symmetry breaking significantly enhances singlet fission efficiency.
  • Novel solid-state materials show improved solution processibility.
  • The findings suggest pathways for developing more efficient solar cells.

Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/69c37bd4b34aaaeb1a67ea39https://doi.org/10.1039/d5sc08452k
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  2. 2Singlet Fission as an Exciton‐Management Platform for Next‐Generation Optoelectronic Materials2026
  3. 3Monosilicon Derivatives of Phenanthrene and Pyrene as Potential Singlet Fission Materials for High-Performance Solar Cells2024
  4. 4Robust Singlet Fission in Disordered Thin Films of a Tethered Dipyrrolonaphthyridinedione Cyclophane-Like Skeleton2025
  5. 5Singlet Fission among Two Single Molecules2026