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Enhanced the electro-optic activity of optical chromophores via rigid isolation groups modification

Shuhui Bo · Fuyang Huo · Zefan Duan · Pengwei Li · Jiayi Lu · Zhuo Chen
10.25259/ajc_168_2025 379 Views 1 Citations
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Abstract

We engineered a conjugated organic chromophore, BHC-1, for second-order nonlinear optics, integrating a julolidine donor, a CF3-Ph-TCF acceptor, and a diene bridge. To systematically study steric effects, the diene bridge was further modified with two types of distinct benzene derivative isolation groups, leading to the synthesis of chromophores BHC-2 and BHC-3. In this paper, the synthesized chromophores demonstrated robust thermal stability, as evidenced by decomposition temperatures above 230°C. Notably, UV-Vis analysis revealed that the chromophores BHC-2 and BHC-3 showed a stronger solvent effect, and they were more easily polarized than the chromophore BHC-1. By doping the three chromophores in amorphous polycarbonate (APC) at a significant weight fraction (35 wt%), the highest electro-optic (EO) coefficients (r33) at 1310 nm can reach 70, 121, and 132 pm/V-1. The results showed that polymers doped with chromophores bearing rigid sterically hindered groups exhibit higher EO activity. It suggests that the benzene derivative isolation groups are critical for mitigating dipole-dipole interactions through steric hindrance and enhancing the poling efficiency. The high EO coefficients and the good thermal stability validate its application in the field of nonlinear optics.

Cite this Article (APA)
Shuhui, B., Fuyang, H., Zefan, D., Pengwei, L., Jiayi, L., Zhuo, C. (2025). Enhanced the electro-optic activity of optical chromophores via rigid isolation groups modification. Arabian Journal of Chemistry. https://doi.org/10.25259/ajc_168_2025
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Published in
ISSN 1878-5352
Quartile Q1
AMS Score 100
Field Natural Sciences
Publisher Scientific Scholar
Country 🇸🇦 Saudi Arabia
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Publication Details
Year 2025
Language English
Added 01 Aug 2026