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四苯乙烯-蒽醌的低压敏感压致变色荧光开关

Low-Pressure Sensitive Piezochromic Fluorescence Switching of Tetraphenylethylene-Anthraquinone.

作者信息

Wei Yude, Yang Runqing, Cui Guangzhen, Dai Shuting, Pan Guocui, Wang Jing, Ren Haoxuan, Ma Wenyue, Gu Zijian, Zhang Chenchen, Li Guangming, Liu Zhaoyang, Xu Bin, Tian Wenjing

机构信息

State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, 130012, Changchun, P. R. China.

出版信息

Chemistry. 2023 Aug 25;29(48):e202301070. doi: 10.1002/chem.202301070. Epub 2023 Jun 7.

Abstract

Sensing of low-pressure signals is of great importance for cutting-edge technologies. Organic piezochromic molecules offer a promising library of pressure sensitive materials which can be tailor-designed toward specific requirements. However, very few examples of low-pressure sensitive piezochromic fluorescent molecules have been obtained till date, and the underlying mechanisms are still in its infancy. Herein, we report highly sensitive piezochromic fluorescent switching under low-pressure regimes (∼60 kPa) of tetraphenylethylene-anthraquinone (TPE-AQ) based on the controlled molecular design and polymorphic phase strategy. The influence of both intramolecular conformation effect and variations of intermolecular stacking modes on the piezochromic property of TPE-AQ is investigated. The underlying mechanism of the low-pressure sensitive piezochromic fluorescence switching is demonstrated to be closely related to the loosely packed molecular orientation, as confirmed by X-ray diffraction measurements combined with simulations. This work provides a way to design highly efficient pressure sensors based on organic molecular systems.

摘要

对前沿技术而言,低压信号传感至关重要。有机压致变色分子提供了一系列有前景的压敏材料,可根据特定需求进行定制设计。然而,迄今为止,获得的低压敏感压致变色荧光分子实例极少,其潜在机制仍处于起步阶段。在此,我们基于可控分子设计和多晶型相策略,报道了四苯基乙烯-蒽醌(TPE-AQ)在低压范围(约60 kPa)下的高灵敏压致变色荧光开关特性。研究了分子内构象效应和分子间堆积模式变化对TPE-AQ压致变色性能的影响。结合模拟的X射线衍射测量证实,低压敏感压致变色荧光开关的潜在机制与分子取向松散堆积密切相关。这项工作为基于有机分子体系设计高效压力传感器提供了一种方法。

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