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硫醇加成的酚盐甲川花菁染料的温度感应:醌亚甲基共振结构的重要性。

Temperature Sensing of Thiolate Addition by Phenolate Merocyanine Dyes: Importance of the Quinone Methide Resonance Structure.

机构信息

Departments of Chemistry and Toxicology, University of Guelph, Guelph, Ontario N1G 2W1, Canada.

Advanced Analysis Centre, University of Guelph, Guelph, Ontario N1G 2W1, Canada.

出版信息

J Org Chem. 2021 Jan 15;86(2):1583-1590. doi: 10.1021/acs.joc.0c02428. Epub 2020 Dec 24.

Abstract

Merocyanine (MC) dyes containing an aromatic donor vinyl linked to a cationic acceptor serve as chemosensors for analyte detection. Their electrophilicity permits anion detection through addition reactions that disrupt dye conjugation. Herein, we demonstrate the temperature influence on thiolate addition to MCs containing the -methylbenzothiazolium (Btz) acceptor. The zwitterionic phenolate dye (PhOBtz) displays impressive temperature sensitivity to thiolate addition, with the brightly colored phenolate favored upon heating and the colorless thiolate adduct favored upon cooling. In contrast, MC dyes containing neutral donors (PhOMeBtz and PhNMeBtz) display only moderate temperature sensitivity to thiolate capture and release. Extraction of thermodynamic parameters demonstrates a strong enthalpic driving force for thiolate addition to PhOBtz that is absent for PhOMeBtz and PhNMeBtz. Variable temperature H NMR studies demonstrate that PhOBtz adopts the -quinone methide (-QM) resonance structure. Thus, thiolate addition to PhOBtz resembles 1,6-conjugate addition to -QMs which is accompanied by a large increase in the π-stabilization energy upon adduct formation. Manipulation of PhOBtz electrophilicity by attaching chlorine substituents to the phenolate caused the thiolate adducts to dissipate over time for -QM regeneration. Our work provides new design ideas for the utility of phenolate MC dyes, given that they are carriers of the -QM electrophile.

摘要

含芳族供体乙烯基与阳离子受体相连的花菁染料可用作分析物检测的化学传感器。它们的亲电性允许通过加成反应检测阴离子,从而破坏染料的共轭。在此,我们证明了温度对含 - 甲基苯并噻唑(Btz)受体的花菁加成反应的影响。两性离子酚盐染料(PhOBtz)对硫醇加成显示出令人印象深刻的温度敏感性,加热时优先形成颜色鲜艳的酚盐,冷却时优先形成无色的硫醇加合物。相比之下,含中性供体的 MC 染料(PhOMeBtz 和 PhNMeBtz)对硫醇的捕获和释放仅显示出适度的温度敏感性。提取热力学参数表明,PhOBtz 与硫醇加成的驱动力主要是焓,而 PhOMeBtz 和 PhNMeBtz 则没有。变温 H NMR 研究表明,PhOBtz 采用 - 醌甲醚(-QM)共振结构。因此,硫醇加成到 PhOBtz 类似于 -QMs 的 1,6-共轭加成,伴随着加成形成后π-稳定化能的大幅增加。通过将氯取代基连接到酚盐上来调节 PhOBtz 的亲电性,导致 -QM 再生时硫醇加合物随时间消散。鉴于酚盐 MC 染料是 -QM 亲电体的载体,我们的工作为其应用提供了新的设计思路。

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