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首页> 外文期刊>Organic & biomolecular chemistry >A mechanistic study of the dynamic quenching of the excited state of europium(Ⅲ) and terbium(Ⅲ) macrocyclic complexes by charge-or electron transfer
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A mechanistic study of the dynamic quenching of the excited state of europium(Ⅲ) and terbium(Ⅲ) macrocyclic complexes by charge-or electron transfer

机译:电荷或电子转移动态猝灭of(Ⅲ)和ter(Ⅲ)大环配合物激发态的机理

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摘要

Dynamic quenching of the metal-based excited state of Eu(Ⅲ) and Tb(Ⅲ) complexes of sixteen different macrocyclic ligands has been studied. Quenching by urate, ascorbate and selected catechols is most effective for Tb(Ⅲ) systems, and involves intermediate formation of an excited state complex (exciplex) between the electron-poor heterocyclic sensitising moiety incorporated into the ligand (tetraazatriphenylene, azaxanthone or a pyrazoyl-azaxanthone) and the electron-rich reductant. The process is sensitive to steric inhibition created by the local ligand environment; quenching is reduced as temperature increases as exciplex formation is entropically disfavoured. In contrast, iodide quenches each complex studied according to a classical collisional encounter model; increasing temperature enhances the rate of quenching, and the process is more sensitive to local electrostatic fields generated by ligand substitution, conforming to a traditional Stern-Volmer kinetic model. Quenching may be inhibited by protein association, allowing the identification of candidates for use as optical imaging probes in cellulo.
机译:研究了十六种不同大环配体的Eu(Ⅲ)和Tb(Ⅲ)配合物的金属基激发态的动态猝灭。用尿酸盐,抗坏血酸盐和选定的儿茶酚猝灭对Tb(Ⅲ)系统最有效,并且涉及在掺入配体的电子贫杂环敏化部分(四氮杂三苯撑,氮杂蒽酮或吡唑基-吡咯烷酮-氮杂蒽酮)和富电子还原剂。该过程对局部配体环境产生的空间抑制敏感。随着激冷复合物形成的熵变,随着温度升高,淬灭作用降低。相反,碘化物根据经典的碰撞相遇模型淬灭了所研究的每个复合物。升高温度可提高淬灭速率,并且该过程对配体取代产生的局部静电场更为敏感,符合传统的Stern-Volmer动力学模型。蛋白质缔合可以抑制淬灭,从而可以鉴定用作纤维素的光学成像探针的候选物。

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