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具有锗(IV)稠合偶氮苯π共轭体系的近红外发射高价化合物

Near-Infrared Emissive Hypervalent Compounds with Germanium(IV)-Fused Azobenzene π-Conjugated Systems.

作者信息

Gon Masayuki, Yaegashi Misao, Tanaka Kazuo, Chujo Yoshiki

机构信息

Department of Polymer Chemistry, Graduate School of Engineering, Kyoto University, Katsura, Nishikyo-ku, Kyoto, 615-8510, Japan.

出版信息

Chemistry. 2023 Feb 24;29(12):e202203423. doi: 10.1002/chem.202203423. Epub 2023 Jan 18.

Abstract

A novel molecular design for showing near-infrared (NIR) emission is still required for satisfying growing demands for NIR-light technology. In this research, hypervalent compounds with germanium (Ge)-fused azobenzene (GAz) scaffolds were discovered that can exhibit NIR emission (λ =690∼721 nm, Φ =0.03∼0.04) despite compact π-conjugated systems. The unique optical properties are derived from the trigonal bipyramidal geometry of the hypervalent compounds constructed by combination of Ge and azobenzene-based tridentate ligands. Experimental and theoretical calculation results disclosed that the germanium-nitrogen (Ge-N) coordination at the equatorial position strongly reduces the energy level of the LUMO (lowest unoccupied molecular orbital), and the three-center four-electron (3 c-4 e) bond in the apical position effectively rises the energy level of the HOMO (highest occupied molecular orbital). It is emphasized that large narrowing of the HOMO-LUMO energy gap is achieved just by forming the hypervalent bond. In addition, the narrow-energy-gap property can be enhanced by extension of π-conjugation. The obtained π-conjugated polymer shows efficient NIR emission both in solution (λ =770 nm and Φ =0.10) and film (λ =807 nm and Φ =0.04). These results suggest that collaboration of a hypervalent bond and a π-conjugated system is a novel and effective strategy for tuning electronic properties even in the NIR region.

摘要

为满足对近红外(NIR)光技术不断增长的需求,仍需要一种用于显示近红外发射的新型分子设计。在本研究中,发现了具有锗(Ge)稠合偶氮苯(GAz)支架的高价化合物,尽管其π共轭体系紧凑,但仍能表现出近红外发射(λ = 690∼721 nm,Φ = 0.03∼0.04)。这些独特的光学性质源自由Ge和基于偶氮苯的三齿配体组合构建的高价化合物的三角双锥几何结构。实验和理论计算结果表明,赤道位置的锗 - 氮(Ge - N)配位强烈降低了最低未占分子轨道(LUMO)的能级,而顶端位置的三中心四电子(3c - 4e)键有效地提高了最高占据分子轨道(HOMO)的能级。需要强调的是,仅通过形成高价键就能实现HOMO - LUMO能隙的大幅缩小。此外,通过扩展π共轭可以增强窄能隙特性。所得到的π共轭聚合物在溶液(λ = 770 nm,Φ = 0.10)和薄膜(λ = 807 nm,Φ = 0.04)中均表现出高效的近红外发射。这些结果表明,高价键与π共轭体系的协同作用是一种即使在近红外区域调节电子性质的新颖且有效的策略。

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