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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Luminescent rhenium(I) tricarbonyl complexes with pyrazolylamidino ligands: photophysical, electrochemical, and computational studies
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Luminescent rhenium(I) tricarbonyl complexes with pyrazolylamidino ligands: photophysical, electrochemical, and computational studies

机译:发光的ly(I)pyr与吡唑基lamidino配体的配合物:光物理,电化学和计算研究

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New pyrazolylamidino complexes fac-[ReCl(CO)(3)(NH=C(Me)pz(star)-kappa N-2,N)] (pz(star)H = pyrazole, pzH;3,5-dimethylpyrazole, dmpzH; indazole, indzH) and fac-[ReBr(CO)(3)(NH-C(Ph)pz(star)-kappa N-2,N)] are synthesized via base-catalyzed coupling of the appropriate nitrile with pyrazole, or via metathesis by halide abstraction with AgBF4 from a bromido pyrazolylamidino complex and the subsequent addition of LiCl. In order to study both the influence of the substituents present at the pyrazolylamidino ligand, and that of the "sixth" ligand in the complex, photophysical, electrochemical, and computational studies have been carried out on this series and other complexes previously described by us, of the general formula fac-[ReL-(CO)(3)(NH-C(R') pz(star)-kappa N-2,N)](n+) (L = Cl, Br; R' = Me, Ph, n = 0; or L = NCMe, dmpzH, indzH, R' = Me, n = 1). All complexes exhibit phosphorescent decays from a prevalently (MLCT)-M-3 excited state with quantum yields (Phi) in the range between 0.007 and 0.039, and long lifetimes (tau similar to 8-1900 ns). The electrochemical study reveals irreversible reduction for all complexes. The oxidation of the neutral complexes was found to be irreversible due to halido-dissociation, whereas the cationic species display a reversible process implying the ReI/ReII couple. Density functional and time-dependent density functional theory (TD-DFT) calculations provide a reasonable trend for the values of emission energies in line with the experimental photophysical data, supporting the (MLCT)-M-3 based character of the emissions.
机译:新的吡唑基酰亚胺复合物fac- [ReCl(CO)(3)(NH = C(Me)pz(star)-kappa N-2,N)](pz(star)H =吡唑,pzH; 3,5-二甲基吡唑, dmpzH;吲唑,indzH)和fac- [ReBr(CO)(3)(NH-C(Ph)pz(star)-kappa N-2,N)]通过适当的腈与吡唑的碱催化偶联合成,或通过溴化吡唑并lamidino络合物中的AgBF4进行卤化物抽象而进行复分解,然后添加LiCl。为了研究吡唑基亚酰胺基配体上存在的取代基的影响以及配合物中的“第六”配体的影响,已经对该系列以及我们先前描述的其他配合物进行了光物理,电化学和计算研究, fac- [ReL-(CO)(3)(NH-C(R')pz(star)-kappa N-2,N)](n +)的式子(L = Cl,Br; R'= Me ,Ph,n = 0;或L = NCMe,dmpzH,indzH,R′= Me,n = 1)。所有复合物均表现出从普遍的(MLCT)-M-3激发态发出的磷光衰变,量子产率(Phi)在0.007至0.039之间,寿命长(τ类似于8-1900 ns)。电化学研究表明所有络合物的还原均不可逆。由于卤素离解,发现中性配合物的氧化是不可逆的,而阳离子物质则显示出可逆的过程,暗示了ReI / ReII对。密度泛函和随时间变化的密度泛函理论(TD-DFT)计算提供了符合实验光物理数据的发射能量值的合理趋势,支持了基于(MLCT)-M-3的发射特性。

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