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小分子探针用于灵敏和长期神经毒剂监测的聚集行为和分子内电荷转移的相干调控。

Coherent Modulation of the Aggregation Behavior and Intramolecular Charge Transfer in Small Molecule Probes for Sensitive and Long-term Nerve Agent Monitoring.

机构信息

Xinjiang Key Laboratory of Trace Chemicals Sensing, Xinjiang Technical Institute of Physics & Chemistry, Chinese Academy of Sciences, Urumqi, 830000, China.

Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Angew Chem Int Ed Engl. 2024 Apr 8;63(15):e202400453. doi: 10.1002/anie.202400453. Epub 2024 Feb 23.

Abstract

Aggregation-induced emission (AIE) shows promising performance in chemical sensing relying on the change of the emission behavior of the probe molecule monomers to the aggregated product. However, whether the response contrast could be further boosted by utilizing the emission property of the aggregated probe and the aggregated product remains a big challenge. Here, an exciting AIE probe regulation strategy was proposed by coherently modulating the aggregation behavior and the intramolecular charge transfer (ICT) property of the probes and thus an aggregated-to-aggregated colorimetric-fluorescent dual-mode detection was achieved. The blue emissive film obtained with the optimal AIE probe has been proven to be effective to recognize the vapor of nerve agent analog DCP in air by emitting a sharp green fluorescence. In addition, a porous polymer-based wet sensing chip loaded with the probe enables the immediate response to DCP vapor with a limit of detection (LOD) of 1.7 ppb, and it was further integrated into a wearable watch device for long-term monitoring of DCP vapor up to two weeks. We expect the present probe design strategy would greatly deepen the AIE-based science and provide new insights for long-term monitoring sensors toward trace hazardous substances.

摘要

聚集诱导发光(AIE)在化学传感中表现出了良好的性能,这主要依赖于探针分子单体到聚集产物的发光行为的变化。然而,利用聚集探针和聚集产物的发光性质是否可以进一步提高响应对比度,仍然是一个巨大的挑战。在这里,我们通过协同调节探针的聚集行为和分子内电荷转移(ICT)性质,提出了一种令人兴奋的 AIE 探针调控策略,从而实现了聚集态-聚集态的比色-荧光双模检测。用最优的 AIE 探针得到的蓝色发射膜被证明可以有效地通过发射尖锐的绿色荧光来识别空气中神经毒剂类似物 DCP 的蒸气。此外,一种基于多孔聚合物的湿敏传感芯片加载了该探针,可以对 DCP 蒸气进行即时响应,检测限(LOD)低至 1.7 ppb,并且进一步集成到一个可穿戴的手表设备中,实现了对 DCP 蒸气长达两周的长期监测。我们期望本研究中的探针设计策略可以极大地深化 AIE 科学,并为痕量危险物质的长期监测传感器提供新的见解。

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