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September 5, 2025Advanced Materials32 citations

Giant Birefringence Induced by Intermolecular Aromatic Interactions in Hydrogen‐Bonded Organic Frameworks

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YSYayong SunHSHongyuan ShaYLYanqiang Li

Key Points

  • Giant birefringence was achieved with a value of 0.800@546 nm in hydrogen-bonded organic framework crystals.
  • This exceptional property arises from polarizability anisotropy and intermolecular aromatic interactions, surpassing all known organic crystals.
  • A novel hydrogen-bonding self-assembly strategy was employed to construct the birefringent crystals, highlighting its significance in material science.
  • The crystal maintains its structure and assembly upon heating, indicating stability and potential for diverse applications in optics.

Abstract

Birefringent crystals are crucial optical materials that play a pivotal role in modulating and detecting the polarization state of light. However, there is still a significant challenge in regulating the assembly of π-conjugated active units to construct optical crystals with giant birefringence. In this study, a hydrogen-bonding self-assembly strategy is proposed to construct an aromatic π-conjugated hydrogen-bonded organic framework birefringent crystal (HOFBC) which exhibits a remarkable birefringence value of 0.763@546 nm, surpassing all reported organic birefringent crystals and significantly exceeding that of any commercial birefringent crystals. Theoretical calculation and structural analyses indicate that this exceptional birefringence arises from high polarizability anisotropy of aromatic π-conjugated units and intermolecular aromatic interactions. Interestingly, when HOFBC-1 is heated to 250 °C and transforms into HOFBC-1-250, the crystal retains its crystalline structure and layer-by-layer assembly mode, achieving a giant birefringence value of 0.800@546 nm. This work presents a novel strategy for developing giant birefringent materials, opening up new opportunities for the application of HOF crystals in birefringence.

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Cite This Study

Sun et al. (2025) studied this question.

synapsesocial.com/papers/68bb42272b87ece8dc958fe3https://doi.org/10.1002/adma.202509171
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  1. 1A Robust Phosphonate‐Based Hydrogen‐Bonded Organic Framework Birefringent Crystal2024 · 9 citations
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