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首页> 外文期刊>Bulletin of the Korean Chemical Society >Electronically‐tuned 2‐(2′‐Hydroxyphenyl)‐4‐pyrenylthiazole through Bond Energy Transfer Donor–Acceptor Couples: Sensing and Biological Applications
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Electronically‐tuned 2‐(2′‐Hydroxyphenyl)‐4‐pyrenylthiazole through Bond Energy Transfer Donor–Acceptor Couples: Sensing and Biological Applications

机译:通过键能量转移供体-受体对进行电子调谐的2-(2'-羟基苯基)-4-吡咯基噻唑:传感和生物学应用

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摘要

A novel pyrene‐conjugated 2‐(2′‐hydroxyphenyl)thiazole probe (HPTP, 1) was prepared, and its photophysical and sensing properties were investigated and compared to those of four model compounds. HPTP effectively detects CN? and glycerol in DMSO, with “turn off” at 425?nm and “turn on” at 495?nm. The sensing ability of 1 towards CN? ions in DMSO, mediated by the hydrogen bonding‐induced disaggregation of aggregates, resulted in the quenching of ESIPT emission at 425?nm. By contrast, in a DMSO–glycerol mixed medium, the aggregate size increased together with the increased degree of intermolecular π–π interactions between two pyrene units located on adjacent molecules, and resulted in partial inhibition of energy/charge transfer from the pyrene unit to the thiazole unit in the excited state. Excitation energy transfer with increased photostability of the ESIPT core was effectively demonstrated in Candida albicans cell lines.
机译:制备了一种新颖的pyr共轭2-(2'-羟基苯基)噻唑探针(HPTP,1),并对其光物理和传感特性进行了研究,并与四种模型化合物进行了比较。 HPTP有效检测CN? DMSO中的甘油,在425nm处“关闭”,在495nm处“打开”。 1对CN的感应能力?氢键诱导的聚集体分解介导的DMSO中的离子导致ESIPT发射在425?nm处猝灭。相比之下,在DMSO-甘油混合介质中,聚集体尺寸增加,并且相邻分子上两个pyr单元之间的分子间π-π相互作用程度增加,并导致部分能量/电荷从the单元转移到to噻唑单元处于激发态。在白色念珠菌细胞系中有效地证明了激发能量的转移以及ESIPT核心光稳定性的增强。

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