首页> 外文期刊>Inorganica Chimica Acta >Photochemical and photophysical properties of ruthenium(II) bis-bipyridine bis-nitrile complexes: Photolability
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Photochemical and photophysical properties of ruthenium(II) bis-bipyridine bis-nitrile complexes: Photolability

机译:钌(II)双联吡啶双腈配合物的光化学和光物理性质:光致化性

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The electrochemical and photophysical properties of two bis-nitrilo ruthenium(II) complexes formulated as [Ru(bpy)_2(L) _2](PF_6)_2, where bpy is 2,2'-bipyridine and L is AN - CH_3CN and sn - NC-CH_2CH_2-CN, have been investigated. Electrochemical data are typical of Ru-bpy complexes with two reversible reduction peaks located near -1.3 and -1.6 V assigned to each bipyridine ligand and one Ru"/Ru'" oxidation wave centered at approximately +1.5 V. The sn derivative is both IR and Raman active with its coordinated CN stretch appearing at 2277 cm~(-1) and 2273 cm ~(-1), respectively. The UV/Vis absorption spectrum of the sn derivative is dominated by an intense (&_(max) ~ 58700 M~(-1) cm~(-1)) absorption band at 287 nm assigned as a LC (π π transition. The peak observed at 418 nm (& & 10400 M~(-1) cm"~(-1)) is an MLCT band while the one at 244 nm (& & 23 600 M~(-1) cm~(-1)) is of LMLCT character. The AN derivative behaves similarly. Both complexes show low-temperature emission at around 537 nm with a lifetime near 10.0 μs. ~1H and ~(13)C assignments are consistent with the formulation of the complexes. The complexes undergo photosubstitution of solvent with quantum efficiencies near one. Calculated and experimental results support replacement of the nitrile ligands by solvent. Based on DFT calculations, the electron density of the HOMO lies on the metal center, the bipyridine ligands and the nitrile ligands and electron density of the LUMO resides primarily on the bipyridine ligands. The electronic spectra obtained from TDDFT calculations closely match the experimental ones.
机译:配制为[Ru(bpy)_2(L)_2](PF_6)_2的两种双硝基钌(II)配合物的电化学和光物理性质,其中bpy是2,2'-联吡啶,L是AN-CH_3CN和sn -已经研究了NC-CH_2CH_2-CN。电化学数据是Ru-bpy配合物的典型数据,其中两个可逆的还原峰位于-1.3和-1.6 V附近,分别分配给每个联吡啶配体,并且一个Ru“ / Ru'”氧化波集中在大约+1.5V。Sn衍生物均为IR和拉曼活性的CN协调拉伸分别出现在2277 cm〜(-1)和2273 cm〜(-1)。 sn衍生物的UV / Vis吸收光谱主要是在287 nm处被指定为LC(ππ跃迁)的强烈(&_(max)〜58700 M〜(-1)cm〜(-1))吸收带。在418 nm(&&10400 M〜(-1)cm“〜(-1))处观察到的峰是MLCT谱带,而在244 nm(&&23600 M〜(-1)cm〜(-1) )具有LMLCT特性。AN衍生物的行为相似。两种配合物均在537 nm处发出低温发射光,寿命接近10.0μs。〜1H和〜(13)C赋值与配合物的配方一致。进行光解,其量子效率接近1,计算结果和实验结果均支持溶剂取代腈配体;根据DFT计算,HOMO的电子密度位于金属中心,联吡啶配体和腈配体以及电子密度LUMO的分子主要位于联吡啶配体上,通过TDDFT计算获得的电子光谱与实验非常吻合ntal的。

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