Programmable Anisotropic in Diazapyrene Cocrystals With Birefringence Exceeding 1.2

L Lingyan Sun G Gangji Yi (Key Laboratory of Green Chemistry and Technology of Ministry of Education College of Chemistry, Sichuan University Chengdu P.R. China) G Guohong Zou (College of Chemistry Sichuan University Chengdu People's Republic of China) C Cheng Zhang

Abstract

ABSTRACT Birefringent crystals underpin polarization control and angular phase matching in nonlinear optics and therefore, attract sustained interest. However, achieving large birefringence (Δn) has largely depended on inorganic frameworks composed of metals with limited natural abundance or sustainability concerns. By contrast, organic cocrystals offer simple preparation and readily tunable packing. Here we design a series of diazapyrene derivatives and obtain 13 crystals, including three single‐component crystals and ten two‐component cocrystals formed separately with three distinct benzene derivatives, whose crystal‐packing anisotropy can be programmed to yield Δ n  = 0.152–1.269. Two compositions, D27N and D13N , combine suitable optical band gaps with exceptional birefringence (Δ n = 1.223 and 1.269 at 546 nm, respectively), ranking among the highest reported for purely organic crystals, and under identical conditions, surpassing all reported inorganic birefringent crystals. Across the series, we uncover a Boltzmann‐type relationship between Δ n and a geometric descriptor Δ S (minimal/maximal projected area of the conjugated core on crystallographic planes), thereby quantitatively linking molecular‐level packing anisotropy to macroscopic Δ n . Cocrystal engineering also modulates second‐order nonlinear optical responses, including symmetry control and second‐harmonic generation tuning. This work establishes a metal‐free, designable route to high‐Δ n optical crystals and provides a predictive metric for anisotropy‐driven materials discovery.

Article Details

Volume / Issue Vol. 65, Issue 10
Published March 02, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (4)

L

Lingyan Sun

G

Gangji Yi

Key Laboratory of Green Chemistry and Technology of Ministry of Education College of Chemistry, Sichuan University Chengdu P.R. China

G

Guohong Zou

College of Chemistry Sichuan University Chengdu People's Republic of China

C

Cheng Zhang