基于比利牛斯的聚集诱导排放:调节聚集的桥梁模型。

IF 25.7 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES
The Innovation Pub Date : 2025-03-17 eCollection Date: 2025-07-07 DOI:10.1016/j.xinn.2025.100884
Yuting Lin, Jianyu Zhang, Wen-Jin Wang, Zhenguo Tang, Xianying Fang, Xu Xu, Fritz E Kühn, Zheng Zhao, Qiang Yong, Ben Zhong Tang, Xu-Min Cai
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引用次数: 0

摘要

聚集过程对分子聚集结构向宏观光物理性质的转变起着重要的调节作用。芘(Py)作为最简单的二聚体候选物,可以作为研究其聚集的合适模型。本文研究了一系列聚致发射(AIE)材料,阐明了氧、取代基、分子运动和堆积在聚集过程中的综合作用,初步实现了控制聚集结构的目的。Py具有很大的平面和共轭构象,由于氧在分子水平上猝灭而在聚集状态下由于氧隔离而显示出异常的AIE特征。虽然引入取代基会引起分子运动,并在分子状态下类似地减弱发光,但由于聚集结构的变化,取代基对聚集态光物理性质的影响差异很大,表现出从弱蓝色、强青色、强绿色到弱黄色的发射。有趣的是,天然链环取代的py -脱氢枞胺(Py-DAA)具有机械变色和酸性变色两种特性,可以协同应用于动态加解密。这项工作不仅首次阐明了Py独特的AIE性质,而且阐明了聚集在单分子和聚集态之间的桥接作用,初步实现了对聚集结构的控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Pyrene-based aggregation-induced emission: A bridge model to regulate aggregation.

The aggregation process plays a significant role in regulating the aggregate structures from molecules toward macroscopic photophysical properties. Pyrene (Py), as the simplest dimer candidate, serves as a suitable model for studying the aggregation. Herein, a series of Py-based aggregation-induced emission (AIE) materials have been investigated by clarifying the comprehensive roles of oxygen, substituents, molecular motion, and packing during aggregation, initially realizing the aim of controlling aggregate structures. With a largely planar and conjugated conformation, Py shows anomalous AIE characteristics due to the oxygen quenching at the molecular level but turn-on fluorescence in the aggregate state because of the oxygen isolation. Although introducing substituents induces molecular motion and similarly weakened luminescence in the molecular state, the impact of substituents on the aggregate-state photophysical properties enormously differs, exhibiting from weak blue, strong cyan, and strong green to weak yellow emissions, due to variable aggregate structures. Interestingly, the natural alicycle-substituted Py-dehydroabietylamine (Py-DAA) exhibits both mechanochromism and acidichromism, which can be synergistically applied in dynamic encryption-decryption. This work not only elucidates the unique AIE property of Py for the first time but also clarifies the bridging role of aggregation between single-molecular and aggregate states, achieving preliminary control over the aggregate structures.

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来源期刊
The Innovation
The Innovation MULTIDISCIPLINARY SCIENCES-
CiteScore
38.30
自引率
1.20%
发文量
134
审稿时长
6 weeks
期刊介绍: The Innovation is an interdisciplinary journal that aims to promote scientific application. It publishes cutting-edge research and high-quality reviews in various scientific disciplines, including physics, chemistry, materials, nanotechnology, biology, translational medicine, geoscience, and engineering. The journal adheres to the peer review and publishing standards of Cell Press journals. The Innovation is committed to serving scientists and the public. It aims to publish significant advances promptly and provides a transparent exchange platform. The journal also strives to efficiently promote the translation from scientific discovery to technological achievements and rapidly disseminate scientific findings worldwide. Indexed in the following databases, The Innovation has visibility in Scopus, Directory of Open Access Journals (DOAJ), Web of Science, Emerging Sources Citation Index (ESCI), PubMed Central, Compendex (previously Ei index), INSPEC, and CABI A&I.
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