首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Bifunctional charge transfer operated fluorescent probes with acceptor and donor receptors. 1. Biphenyl-type sensor molecules with protonation-induced anti-energy gap rule behavior
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Bifunctional charge transfer operated fluorescent probes with acceptor and donor receptors. 1. Biphenyl-type sensor molecules with protonation-induced anti-energy gap rule behavior

机译:具有受体和供体受体的双功能电荷转移操作荧光探针。 1.具有质子化诱导的反能隙规则行为的联苯型传感器分子

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On the basis of biphenyl (b) type molecules bpb-R substituted with a 2,2':6',2"-terpyridine acceptor (bp) and either amino-type donor receptors (R = dimethylamino (DMA), A15C5 = monoaza-15-crown-5) or nonbinding substituents (R = CF3, H, OMe) of various donor strengths, we developed a family of charge transfer (CT) operated monofunctional and bifunctional fluorescent sensors for protons and metal ions. These molecules are designed to communicate the interaction of an analyte with the acceptor and the donor receptor differing in basicity and cation selectivity by clearly distinguishable spectral shifts and intensity modulations in absorption and in emission as well as in fluorescence lifetime. From the dependence of the fluorescence spectra, fluorescence quantum yields, and fluorescence lifetimes of bpb-R on solvent polarity and proton concentration, the photophysics of bpb-R and their protonated analogues can be shown to be governed by the relaxation to a CT state of forbidden nature and by the switching between anti-energy and energy gap law type behaviors. This provides the basis for analytically favorable red shifted emission spectra in combination with comparatively high fluorescence quantum yields. Accordingly, bpb-H and bpb-OMe are capable of ratiometric emission signaling of protons. bpb-DMA reveals a protonation-induced ON-OFF-ON switching of its emission.
机译:基于联苯(b)型分子bpb-R被2,2':6',2“-吡啶吡啶受体(bp)和任一氨基型供体受体取代(R =二甲基氨基(DMA),A15C5 =单氮杂-15冠5)或具有不同供体强度的非结合取代基(R = CF3,H,OMe),我们开发了电荷转移(CT)操作的用于质子和金属离子的单功能和双功能荧光传感器家族。通过清晰区分吸收和发射以及荧光寿命中的光谱位移和强度调制,来传达分析物与碱性和阳离子选择性不同的受体和供体受体之间的相互作用。 bpb-R的收率和荧光寿命与溶剂极性和质子浓度的关系,bpb-R及其质子化类似物的光物理性质可以证明是由弛豫到禁止性质的CT状态并通过反能量和能隙定律类型行为之间的切换。这为分析有利的红移发射光谱与较高的荧光量子产率结合提供了基础。因此,bpb-H和bpb-OMe能够按比例发射质子。 bpb-DMA揭示了质子化诱导的发射的开-关-开切换。

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