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一种带有噻苯达唑侧基的聚(咔唑-alt-三唑)作为用于检测铜(II)离子和半胱氨酸的“开-关-开”型荧光探针。

A Poly(carbazole-alt-triazole) with Thiabendazole Side Groups as an "On-Off-On" Fluorescent Probe for Detection of Cu(II) Ion and Cysteine.

作者信息

Gao Liting, Xu Jinyao, Luo Haoyue, Lei Hong, Chen Xinai, Wan Jiayi, Feng Juhua, Liu Kuan

机构信息

Sichuan Province, College of Science, Sichuan Agricultural University, Sichuan, 625014, Ya'an, China.

出版信息

J Fluoresc. 2023 Jul;33(4):1577-1591. doi: 10.1007/s10895-023-03164-9. Epub 2023 Feb 15.

Abstract

A novel conjugated polymer PCZBTA-TBZ containing thiabendazole as recognition unit was synthesized via Suzuki coupling reaction, and its structural characterization, spectroscopic analysis and photophysical properties were investigated. In the metal ion response study, the addition of Cu led to the occurrence of the photoinduced electron transfer (PET) mechanism, which significantly quenched the fluorescence of the polymer PCZBTA-TBZ with a quenching effect of 98%. Furthermore, I can significantly quench the fluorescence of the polymer, but other anions have no such effect. According to the density functional theory calculation, compared with other polycarbazoles or other alternative copolymers containing carbazole, with alternating carbazole and triazole enhances the electron mobility and reduces the energy band gap of the polymer. Due to the strong coordination ability between Cu and Cys, the adding Cys competes the Cu in the [PCZBTA-TBZ-Cu] complex, blocking the occurrence of PET, and the fluorescence intensity of PCZBTA-TBZ is restored. The addition of other amino acids caused almost no change. The polymer is expected to be used for dual fluorescence detection of specific metal ions and Cys.

摘要

通过铃木耦合反应合成了一种以噻苯达唑为识别单元的新型共轭聚合物PCZBTA-TBZ,并对其结构表征、光谱分析和光物理性质进行了研究。在金属离子响应研究中,加入铜导致光诱导电子转移(PET)机制的发生,这显著淬灭了聚合物PCZBTA-TBZ的荧光,淬灭效果达98%。此外,碘能显著淬灭该聚合物的荧光,但其他阴离子则无此效果。根据密度泛函理论计算,与其他聚咔唑或其他含咔唑的交替共聚物相比,咔唑和三唑交替排列增强了聚合物的电子迁移率并减小了其能带隙。由于铜与半胱氨酸之间具有很强的配位能力,加入半胱氨酸会与[PCZBTA-TBZ-Cu]络合物中的铜发生竞争,阻止PET的发生,PCZBTA-TBZ的荧光强度得以恢复。加入其他氨基酸几乎没有变化。该聚合物有望用于特定金属离子和半胱氨酸的双荧光检测。

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