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B/N 共掺杂芳基乙烯基发色团:合成、性质和微晶电子晶体学研究。

B/N-Doped -Arylenevinylene Chromophores: Synthesis, Properties, and Microcrystal Electron Crystallographic Study.

机构信息

Department of Chemistry, School of Science, The University of Tokyo, Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.

Key Laboratory of Organosilicon Chemistry and Material Technology, Ministry of Education, Hangzhou Normal University, Hangzhou 311121, China.

出版信息

J Am Chem Soc. 2020 Nov 4;142(44):18990-18996. doi: 10.1021/jacs.0c10337. Epub 2020 Oct 22.

Abstract

Linearly conjugated systems have long served as an archetype of conjugated materials, but suffer from two intrinsic structural problems: potential instability due to intermolecular interactions and the flexibility of the C-C bonds connecting C═C bonds. Efforts to solve these problems have included the insertion of aromatic units as a part of the conjugation and the introduction of carbon bridges to stop the bond rotation. We report here B/N-doped -arylenevinylene chromophores synthesized through the incorporation of a cyclopenta[][1,2]azaborole framework as a part of the conjugated system. The ring strain intrinsic to this new skeleton both flattens and rigidifies the conjugation, and the B-N dative bond is much easier to form than a C-C bond, which simplifies the synthetic design. The B-N dative bond also reduces the HOMO-LUMO gap, thereby causing a significant redshift of the absorption and emission compared with their all-carbon congeners while retaining high photostability and high fluorescence quantum yield in both solution and film states. A doubly B/N-doped compound showed emission peaks at 540 nm with a small Stokes shift of 20 nm and a fluorescence quantum yield of 98%. The molecules serve as excellent lipophilic fluorescent dyes for live-cell imaging, showing a higher photostability than that of commercially available BODIPY-based dyes.

摘要

线性共轭体系长期以来一直是共轭材料的典型范例,但存在两个内在的结构问题:由于分子间相互作用而导致的潜在不稳定性,以及连接 C═C 键的 C-C 键的柔韧性。为了解决这些问题,人们努力将芳香单元插入共轭体系中作为一部分,并引入碳桥来阻止键旋转。我们在此报告了通过将环戊二烯并[][1,2]氮杂硼杂环戊二烯骨架作为共轭体系的一部分来合成的 B/N 掺杂 -芳基乙烯基发色团。这个新骨架固有的环张力使共轭既平坦化又僵化,并且 B-N 配位键比 C-C 键更容易形成,这简化了合成设计。B-N 配位键还减小了 HOMO-LUMO 能隙,从而使吸收和发射相对于其全碳同系物发生显著红移,同时在溶液和薄膜状态下保持高的光稳定性和高荧光量子产率。双 B/N 掺杂化合物的发射峰在 540nm 处,Stokes 位移为 20nm,荧光量子产率为 98%。这些分子可用作亲脂性荧光染料进行活细胞成像,其光稳定性高于市售的基于 BODIPY 的染料。

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