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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >The photochemistry of mono- and dinuclear cyclometalated bis(tridentate)ruthenium(II) complexes: dual excited state deactivation and dual emission
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The photochemistry of mono- and dinuclear cyclometalated bis(tridentate)ruthenium(II) complexes: dual excited state deactivation and dual emission

机译:单核和双核环金属化双(三齿)钌(II)配合物的光化学:双激发态失活和双发射

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The synthesis and characterization of a series of weakly emissive mononuclear cyclometalated [Ru(dpb-R) (tpy)](+) complexes with functional groups R of varying electron-donating characters at the dpb ligand are described (dpbH = 1,3-di(2-pyridyl) benzene, tpy = 2,2'; 6', 2''-terpyridine, 1(+): R = NHCOMe, 2(+): R = NH2, 3(+): R = COOEt, 4(+): R = COOH). Steady-state emission spectroscopy in the temperature range between 298 K and 77 K revealed a previously unrecognized excited state deactivation pathway via low-lying triplet ligand-to-ligand ((LL)-L-3'CT) charge transfer states in addition to the well-known pathway via (MC)-M-3 states. Thermal activation barriers for depopulation of the emissive metal-to-ligand charge transfer ((MLCT)-M-3) states via the 3MC (metal-centered) and (LL)-L-3'CT states were determined experimentally for complexes 1(+) and 3(+). The experimental results were further corroborated by calculating the respective (MLCT)-M-3-(LL)-L-3'CT and (MLCT)-M-3-(MC)-M-3 transition states and their energies with density functional theoretical methods. The R substituent modifies the energy difference between the (MLCT)-M-3 and (LL)-L-3'CT states and the corresponding activation barrier but leaves the analogous (MLCT)-M-3/(MC)-M-3 energetics essentially untouched. Additionally, the dinuclear complex [(tpy) Ru(dpb-NHCO-dpb) Ru(tpy)](2+), 6(2+), containing a biscyclometalating bridge was devised. Despite the asymmetric nature induced by the amide bridge, the mixed-valent cation 6(3+) is ascribed to Robin-Day class II with a broad and intense intervalence charge-transfer (IVCT) absorption (lambda(max) = 1165 nm). Upon optical excitation, the Ru-II/Ru-II complex 6(2+) exhibits dual emission in liquid solution from two independently emitting (MLCT)-M-3 states localized at the two remote [Ru(tpy)] fragments. No equilibration via Dexter energy transfer is possible due to their large distance and short excited state lifetimes.
机译:描述和合成了一系列弱发射的单核环金属化的[Ru(dpb-R)(tpy)](+)配合物,这些配合物在dpb配体上具有不同的供电子特性的官能团R(dpbH = 1,3-二(2-吡啶基)苯,tpy = 2,2'; 6',2''-吡啶,1(+):R = NHCOMe,2(+):R = NH2,3(+):R = COOEt ,4(+):R = COOH)。在298 K和77 K之间的温度范围内的稳态发射光谱表明,除了低价的三重态配体到配体((LL)-L-3'CT)电荷转移态外,还存在以前无法识别的激发态失活途径。通过(MC)-M-3状态的已知途径。通过配合物1的实验确定了通过3MC(以金属为中心)和(LL)-L-3'CT状态使发射金属向配体电荷转移((MLCT)-M-3)状态减少的热激活势垒(+)和3(+)。通过计算各自的(MLCT)-M-3-(LL)-L-3'CT和(MLCT)-M-3-(MC)-M-3跃迁态及其能量随密度的变化进一步证实了实验结果功能理论方法。 R取代基修饰(MLCT)-M-3和(LL)-L-3'CT状态与相应的激活势垒之间的能量差,但保留类似的(MLCT)-M-3 /(MC)-M- 3个能量学基本未触及。另外,设计了含有双环金属化桥的双核络合物[(tpy)Ru(dpb-NHCO-dpb Ru(tpy)](2 +),6(2+)。尽管酰胺桥诱导了不对称性质,但混合价阳离子6(3+)仍被归为Robin-Day II类,具有宽广且强烈的间隔电荷转移(IVCT)吸收(λ(max)= 1165 nm) 。在光激发下,Ru-II / Ru-II配合物6(2+)在液体溶液中显示出两个局部发射的[Ru(tpy)]片段处的两个独立发射(MLCT)-M-3状态的双发射。由于它们的距离长且激发态寿命短,因此无法通过德克斯特能量传递进行平衡。

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