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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >pH-Responsive colorimetric, emission and redox switches based on Ru(II)-terpyridine complexes
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pH-Responsive colorimetric, emission and redox switches based on Ru(II)-terpyridine complexes

机译:基于Ru(II)的PH响应比色,发射和氧化还原开关 - 吡啶配合物

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We have undertaken a thorough investigation on pH-responsive optical and redox switching behaviors of our recently reported trans form of bis-tridentate Ru(II) luminophores, [(H(2)pbbzim)Ru(tpy-pvp-X)](2+) where X = H, Me, Cl, NO2, and Ph. The complexes possess two benzimidazole protons in their second coordination sphere, which became acidic upon coordinating influence of Ru2+ and could be successively deprotonated with the increase of pH. The effect of pH on photophysical and electrochemical behaviours of the complexes was thoroughly studied. Substantial quenching of emission together with the red-shift of both absorption (color change) and emission bands is noticed for all complexes upon dissociation of NH protons. Absorption vs. pH data were employed for determination of ground-state pK(a) values, while excited-state pK(a) (pK(a)*) values were estimated by employing the Forster cycle based equation. The electronic nature of X induces a small but finite effect on the pK(a) values and a linear correlation is found by plotting pK(a) vs. Hammett sigma(p) parameters of X. Proton-coupled electrochemical behaviours were investigated within the pH range of 1-10. From the E-1/2 vs. pH plot, acid dissociation constants in different protonation states of the complexes were estimated in both Ru2+ and Ru3+ states. Compared with their protonated forms which exhibit reversible oxidation within 0.91-0.95 V, the oxidation potential of the doubly deprotonated forms shifted remarkably to the cathodic region (0.61-0.66 V). In essence, the present complexes act as potential pH-responsive colorimetric, emission and redox switches.
机译:我们对我们最近报道的反式双三齿Ru(II)发光体[(H(2)pbbzim)Ru(tpy-pvp-X)](2+)的pH响应光学和氧化还原开关行为进行了深入研究,其中X=H,Me,Cl,NO2和pH。该配合物在其第二配位球中含有两个苯并咪唑质子,在Ru2+的配位作用下,配合物变酸,随着pH值的增加,配合物可以连续脱质子。深入研究了pH值对配合物光物理和电化学行为的影响。当NH质子离解时,所有配合物都会出现发射的大量猝灭以及吸收(颜色变化)和发射带的红移。吸收与pH数据用于测定基态pK(a)值,而激发态pK(a)(pK(a)*)值则通过基于福斯特循环的方程式进行估算。X的电子性质对pK(a)值产生了很小但有限的影响,通过绘制pK(a)与X的Hammett-sigma(p)参数发现了线性相关性。在pH值为1-10的范围内研究了质子耦合电化学行为。根据E-1/2 vs.pH曲线,估算了Ru2+和Ru3+状态下配合物不同质子化状态下的酸离解常数。与在0.91-0.95 V范围内表现出可逆氧化的质子化形式相比,双脱质子化形式的氧化电位显著地向阴极区移动(0.61-0.66 V)。本质上,目前的配合物充当潜在的pH响应比色、发射和氧化还原开关。

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