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用于压力、温度和挥发性溶剂荧光传感的染料封装沸石咪唑酯骨架(ZIF-71)

Dye-Encapsulated Zeolitic Imidazolate Framework (ZIF-71) for Fluorochromic Sensing of Pressure, Temperature, and Volatile Solvents.

作者信息

Zhang Yang, Gutiérrez Mario, Chaudhari Abhijeet K, Tan Jin-Chong

机构信息

Multifunctional Materials & Composites (MMC) Laboratory, Department of Engineering Science, University of Oxford, Parks Road, Oxford OX1 3PJ, U.K.

出版信息

ACS Appl Mater Interfaces. 2020 Aug 19;12(33):37477-37488. doi: 10.1021/acsami.0c10257. Epub 2020 Aug 6.

Abstract

Luminescent metal-organic frameworks (MOFs) offer a multifunctional platform for creating noninvasive sensors and tunable optoelectronics. However, fluorochromic materials that are photophysically resilient and show high sensitivity toward different physical and chemical stimuli are scarce. We report a facile host-guest nanoconfinement strategy to construct a fluorescent hybrid material with multiple sensing capabilities. We design and fabricate a new Guest@MOF material: comprising a zeolitic MOF (ZIF-71) as a nanoporous host for encapsulating rhodamine B (RhB dye) guest molecules, resulting in an RhB@ZIF-71 system with mechanochromic, thermochromic, and solvatochromic sensing response. The fluorochromic sensing properties stem from the nanoconfinement effect that ZIF-71 imposes on RhB monomers, yielding the H- or J-type aggregates with tunable photophysical and photochemical properties. For mechanochromism, the external pressure causes an emission red shift in a linear fashion, switching RhB guests from H-type to J-type aggregates through a shear deformation. For thermochromism, we demonstrate a linear scaling as a function of temperature due to the spatial restriction imposed on J-type aggregates incarcerated in ZIF-71 pores. Harnessing the solvatochromism of RhB@ZIF-71, we interrogated its photochemical response by employing three diverse groups of volatile organic compounds. The multimodal sensing response paved the way to smart applications like photonic pressure sensors, noninvasive thermometers, and ultrasensitive chemosensors.

摘要

发光金属有机框架材料(MOFs)为创建非侵入式传感器和可调谐光电器件提供了一个多功能平台。然而,具有光物理稳定性且对不同物理和化学刺激表现出高灵敏度的荧光变色材料却很稀少。我们报道了一种简便的主客体纳米限域策略,用于构建具有多种传感能力的荧光杂化材料。我们设计并制备了一种新型的客体@MOF材料:由沸石型MOF(ZIF-71)作为纳米多孔主体来封装罗丹明B(RhB染料)客体分子,从而得到具有机械变色、热变色和溶剂变色传感响应的RhB@ZIF-71体系。荧光变色传感特性源于ZIF-71对RhB单体施加的纳米限域效应,产生具有可调光物理和光化学性质的H型或J型聚集体。对于机械变色,外部压力会使发射光谱线性红移,通过剪切变形将RhB客体从H型聚集体转变为J型聚集体。对于热变色,由于ZIF-71孔中包封的J型聚集体受到空间限制,我们证明了其随温度呈线性变化。利用RhB@ZIF-71的溶剂变色特性,我们通过使用三类不同的挥发性有机化合物来研究其光化学反应。这种多模态传感响应为光子压力传感器、非侵入式温度计和超灵敏化学传感器等智能应用铺平了道路。

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