Chiral-driven formation of hybrid cyanurates with large birefringence†

IF 2.6 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY CrystEngComm Pub Date : 2024-11-20 DOI:10.1039/D4CE01123F
Yue Zhao, Chun-Li Hu, Peng-Fei Chen, Ming-Zhi Zhang and Jiang-Gao Mao
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Abstract

Ultraviolet (UV) birefringent crystals have important applications in polarizers, optical isolators and optical information processing. Crystals with large birefringence can enhance the modulation ability of light and realize the miniaturization of devices. However, the birefringence of cyanurates is often limited by the large dihedral angles between anionic groups. In this work, a chiral-driven approach is proposed for the first time to construct cyanurates with large birefringence. We combined racemic or chiral α-methylbenzylamine (α-MBA) molecules with a π-conjugated cyanurate group (CY), which led to the isolation of three organic hybrid cyanurates with wide band gaps >5.10 eV, namely, rac-α-MBACY, R-α-MBACY, and S-α-MBACY. Notably, the presence of chirality leads to a significant reduction of the dihedral angle between the α-MBA cation and (H2C3N3O3) anion and a threefold increase in birefringence from 0.113@546 nm to 0.344@546 nm and 0.338@546 nm. The birefringence values of R-α-MBACY and S-α-MBACY exceed those of most of the cyanurates and commercial crystals, indicating their potential as UV birefringent crystals. This work provides new insights into the design and syntheses of UV birefringent materials.

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手性驱动形成具有大双折射†的杂合氰尿酸盐
紫外双折射晶体在偏振器、光隔离器和光信息处理等方面有着重要的应用。大双折射晶体可以增强光的调制能力,实现器件的小型化。然而,氰脲酸盐的双折射往往受到阴离子基团之间大的二面角的限制。在这项工作中,首次提出了一种手性驱动的方法来构建具有大双折射的氰脲酸盐。我们将外消旋或手性α-甲基苄胺(α-MBA)分子与π共轭氰脲酸酯基团(CY)结合,分离得到三种具有宽带隙>;5.10 eV的有机杂化氰脲酸酯,分别为rac-α-MBACY、R-α-MBACY和S-α-MBACY。值得注意的是,手性的存在导致α-MBA阳离子与(H2C3N3O3)−阴离子之间的二面角明显减小,双折射从0.113@546 nm增加到0.344@546 nm和0.338@546 nm,增加了三倍。R-α-MBACY和S-α-MBACY的双折射值超过了大多数氰酸盐和商业晶体的双折射值,表明它们具有成为紫外双折射晶体的潜力。这项工作为紫外双折射材料的设计和合成提供了新的见解。
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来源期刊
CrystEngComm
CrystEngComm 化学-化学综合
CiteScore
5.50
自引率
9.70%
发文量
747
审稿时长
1.7 months
期刊介绍: Design and understanding of solid-state and crystalline materials
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