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π共轭苯并噻唑和苯并恶唑-硼配合物的研究进展:探索光学和生物材料应用

Advances in Π-Conjugated Benzothiazole and Benzoxazole-Boron Complexes: Exploring Optical and Biomaterial Applications.

作者信息

Barłóg Maciej, Podiyanachari Santhosh Kumar, Bazzi Hassan S, Al-Hashimi Mohammed

机构信息

Department of Chemical Engineering, Texas A&M University at Qatar, Education City, Doha, 23874, Qatar.

Division of Arts and Science, Texas A&M University at Qatar, Education City, Doha, 23874, Qatar.

出版信息

Macromol Rapid Commun. 2025 Apr;46(8):e2400914. doi: 10.1002/marc.202400914. Epub 2025 Feb 20.

Abstract

This mini-review highlights the transformative potential of benzothiazole (BTz)- and benzoxazole (BOz)-based boron-complexed dyes. It represents an innovative evolution of the classic boron-dipyrromethene (BODIPY) structure, which is well established for its superior photophysical properties. Incorporating BTz- or BOz-ligands into the borane (-BR) component, originates more electron-deficient architecture, enabling novel modes of complexation and addressing limitations such as spectral overlap and self-quenching in traditional BODIPY dyes. The review focuses on the remarkable versatility of boron-benzothiazole (BOBTz)- and boron-benzoxazole (BOBOz)-based complexes, particularly in three rapidly advancing fields: organic light emitting diode (LED) technology, bioimaging, and mechanochromic luminescence (MCL). Over the past 15 years, these complexes have demonstrated exceptional adaptability, showcasing enhanced properties like high fluorescence quantum yields, large molar extinction coefficients, and tunable emissions across visible and near-infrared spectra. The insights described in this review highlight the major role of BOBTz- and BOBOz-complexes in shaping innovative, and sustainable advanced materials while addressing emerging challenges in modern materials science. Besides, the refining of both BOBTz- and BOBOz-complexes offers exciting prospects for technological challenges such as energy-efficient lighting, non-invasive imaging, and creating stimuli-responsive materials for next-generation sensors. Moreover, the environmental sustainability of these materials, including green synthesis approaches and recyclable components represents an important frontier for future exploration.

摘要

本综述重点介绍了基于苯并噻唑(BTz)和苯并恶唑(BOz)的硼配合物染料的变革潜力。它代表了经典硼二吡咯亚甲基(BODIPY)结构的创新演变,该结构因其优异的光物理性质而广为人知。将BTz或BOz配体引入硼烷(-BR)组分中,产生了更多缺电子结构,实现了新的络合模式,并解决了传统BODIPY染料中的光谱重叠和自猝灭等局限性。该综述重点关注基于硼苯并噻唑(BOBTz)和硼苯并恶唑(BOBOz)的配合物的显著多功能性,特别是在三个快速发展的领域:有机发光二极管(LED)技术、生物成像和机械变色发光(MCL)。在过去15年中,这些配合物表现出了卓越的适应性,展现出如高荧光量子产率、大摩尔消光系数以及在可见和近红外光谱范围内可调发射等增强特性。本综述中描述的见解突出了BOBTz和BOBOz配合物在塑造创新和可持续先进材料方面的主要作用,同时应对现代材料科学中出现的挑战。此外,对BOBTz和BOBOz配合物的改进为节能照明、非侵入性成像以及为下一代传感器创造刺激响应材料等技术挑战提供了令人兴奋的前景。此外,这些材料的环境可持续性,包括绿色合成方法和可回收成分,是未来探索的一个重要前沿领域。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bd9/12004897/4239e6a27db9/MARC-46-2400914-g010.jpg

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