AIE-MOF/COF多孔材料多功能应用研究进展

IF 2.6 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
CrystEngComm Pub Date : 2025-04-30 DOI:10.1039/D5CE00311C
Siwen Liu, Guijie Liang, Song Wang and Qingsong Hu
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引用次数: 0

摘要

发光材料在照明、显示、传感和生物成像等应用中发挥着至关重要的作用。然而,它们的性能经常受到聚集引起的猝灭(ACQ)的阻碍。2001年,聚集诱导发射(AIE)的发现提供了一个突破,利用AIE发光原(AIEgens),由于受分子内运动(RIM)的限制,AIE发光原在聚集状态下表现出强烈的发射。不幸的是,对于通常用于气体储存、分离和催化的多孔材料,如金属有机骨架(MOFs)和共价有机骨架(COFs),它们的发光经常被强π -π相互作用抑制,导致ACQ。将AIEgens集成到mof和COFs中克服了这一限制,通过连接剂或金属中心修饰创造出具有增强光学和电子性能的发光多孔聚合物。此外,杂化的mof和COFs可以进一步改善结构和发光性能,扩大其在先进技术中的潜力。本文综述了AIE-MOF/COF材料在光电器件、传感、生物医学和光催化等领域的广泛应用。我们重点介绍了它们在发光特性、结构功能化和未来研究方向方面的最新进展,并对它们的设计和多功能应用提供了见解。最后,我们讨论了与其发光相关的挑战,并提出了提高其性能的策略,以实现更广泛的实际应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Recent multifunctional applications of AIE-MOF/COF porous materials

Recent multifunctional applications of AIE-MOF/COF porous materials

Luminescent materials play a crucial role in applications such as lighting, displays, sensing, and bio-imaging. However, their performance is often hindered by aggregation-caused quenching (ACQ). The discovery of aggregation-induced emission (AIE) in 2001 provided a breakthrough, utilizing AIE luminogens (AIEgens) that exhibit strong emission in the aggregated state due to restricted intramolecular motion (RIM). Unfortunately, for porous materials such as metal–organic frameworks (MOFs) and covalent organic frameworks (COFs), which are commonly used in gas storage, separation, and catalysis, their luminescence is often suppressed by strong π–π interactions, resulting in ACQ. Integrating AIEgens into MOFs and COFs overcomes this limitation, creating luminescent porous polymers with enhanced optical and electronic properties through linker or metal center modifications. Furthermore, hybridizing MOFs and COFs unlocks additional structural and luminescence improvements, broadening their potential in advanced technologies. This review explores the versatile applications of AIE-MOF/COF materials, particularly in optoelectronic devices, sensing, biomedicine, and photocatalysis. We highlight recent advancements in their luminescence properties, structural functionalization, and future research directions, offering insights into their design and multifunctional applications. Finally, we discuss challenges related to their luminescence and propose strategies to enhance their performance for broader practical implementation.

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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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