材料科学
金属
各向异性
Crystal(编程语言)
光学各向异性
光学材料
结晶学
纳米技术
光电子学
光学
冶金
液晶
化学
物理
计算机科学
程序设计语言
作者
Lin Qiu,Liang Ma,Wenlong Liu,Yuanyuan Sun,Ru‐Ling Tang
标识
DOI:10.1002/adom.202500149
摘要
Abstract Birefringent crystals are crucial in modulating the polarization state of light within contemporary technological applications. Organic molecules with π‐conjugated structure are known to exhibit significant birefringence effect owing to their unique electronic properties. This study demonstrates that 4, 5‐dichocyanimidazole can be used as a new crystal building block for birefringent crystals. Crystals of C 5 N 4 H 2 ( DCI ) and C 5 N 4 H 2 ·H 2 O ( DCI‐w ) are obtained by evaporation at room temperature. It is worth noting that DCI and DCI‐w exhibit significant birefringence. At 546 nm, the experimental birefringence of DCI is 0.417 and the calculated birefringence of DCI‐w reaches 0.618. The birefringence of DCI‐w is significantly larger than those of all commercial birefringent crystals and exceeds most metal‐free birefringent crystals. First‐principles calculations and structural analysis show that this remarkable birefringence is mainly due to the strong anisotropy of the planar π‐conjugated C 5 N 4 H 2 molecules and the well‐organized arrangement of the groups. This discovery opens up new possibilities for the development of high‐performance birefringent optical materials.
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