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基于苯并咪唑的具有酸响应性和在相变基质中热开关发射的双态发光体。

Benzimidazole-Based Dual-State Luminophores with Acid Responsiveness and Thermo-Switchable Emission in Phase‑Change Matrix.

作者信息

Shan Xueru, Wu Hongwei

机构信息

State Key Laboratory for Modification of Chemical Fiber and Polymer Materials, Key Lab of Science and Technology of Eco-Textile, Ministry of Education, College of Chemistry and Chemical Engineering, Donghua University, Shanghai, 201620, China.

出版信息

Chem Asian J. 2025 Aug 13:e00600. doi: 10.1002/asia.202500600.

Abstract

Dual-state luminescent materials, which emit strongly in both dispersed and aggregate states, are highly desirable for advanced optoelectronic and sensing applications. In this study, we rationally designed a series of benzimidazole-based donor-π-acceptor (D-π-A) compounds using triphenylamine (TPA) as the donor and benzimidazole as the acceptor, functionalized with flexible alkyl chains to modulate intermolecular packing. Benefitting from their rigid planar molecular conformation, all four compounds exhibit intense blue fluorescence in both solution and the PMMA-doped state. Among them, the highest luminescence efficiencies of the molecule C0 in the DCM- and PMMA-doped films reach 78.72% and 65.28%, respectively. Notably, their PMMA-doped films also exhibit obvious yellowish-green afterglows after 5 s continuous UV irradiation. In the solid state, the chain-free molecule C0 forms a staggered stacking with intermolecular hydrogen bonds, resulting in a bright excimer emission. As the alkyl chain length increases, the added steric bulk gradually suppresses the intermolecular interactions, inducing a significant transition from excimer emission to blue-shifted monomer emission. Furthermore, the nitrogen atom of benzimidazole endows these luminophores with pronounced acid-responsive fluorescence behavior. By exploiting the distinct luminescent contrast between the excimer and monomer emissions of C0, we developed a temperature-responsive fluorescence system through embedding C0 into a phase-change matrix, which enables a reversible thermochromic fluorescence switching. This work provides a valuable strategy for designing dual-state emission and stimuli-responsive benzimidazole-based materials with potential applications in optical sensing and display technologies.

摘要

双态发光材料在分散态和聚集态均能强烈发光,是先进光电器件和传感应用中非常理想的材料。在本研究中,我们合理设计了一系列基于苯并咪唑的供体-π-受体(D-π-A)化合物,以三苯胺(TPA)为供体,苯并咪唑为受体,并通过柔性烷基链进行功能化修饰以调节分子间堆积。得益于其刚性平面分子构象,所有四种化合物在溶液和PMMA掺杂状态下均表现出强烈的蓝色荧光。其中,分子C0在二氯甲烷和PMMA掺杂薄膜中的最高发光效率分别达到78.72%和65.28%。值得注意的是,它们的PMMA掺杂薄膜在连续5秒紫外线照射后也呈现出明显的黄绿色余辉。在固态下,无链分子C0通过分子间氢键形成交错堆积,产生明亮的激基缔合物发射。随着烷基链长度增加,增加的空间位阻逐渐抑制分子间相互作用,导致从激基缔合物发射到蓝移单体发射的显著转变。此外,苯并咪唑的氮原子赋予这些发光体显著的酸响应荧光行为。通过利用C0激基缔合物和单体发射之间明显的发光对比度,我们通过将C0嵌入相变基质中开发了一种温度响应荧光系统,实现了可逆的热致变色荧光切换。这项工作为设计具有双态发射和刺激响应性的基于苯并咪唑的材料提供了一种有价值的策略,在光学传感和显示技术中具有潜在应用。

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