首页> 外文期刊>Inorganica Chimica Acta >EXCITED STATE PROPERTIES OF RH(PHI)(2)(PHEN)(3+) AND RELATED COMPLEXES - A STRONG PHOTOOXIDANT
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EXCITED STATE PROPERTIES OF RH(PHI)(2)(PHEN)(3+) AND RELATED COMPLEXES - A STRONG PHOTOOXIDANT

机译:RH(PHI)(2)(PHEN)(3+)及其相关配合物-强光氧化剂的激发态性质

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The excited state properties and reactivity of Rh(phi)(2)(phen)(3+) (phi = 9,10-phenanthrenequinone diimine, phen = 1,10-phenanthroline) were investigated and compared to those of related rhodium(III) and zinc(II) complexes. At 77 K Rh(phi)(2)(phen)(3+) exhibits LC (3) pi pi* dual emission from both phi and phen ligands, whose energies are 2.8 eV and 3.0 eV, respectively, with a biexponential decay that can be fit to 5 ns (98%) and 60 ns (2%) lifetime components. A longer-lived transient is observed by transient absorption both at 77 K and 298 K, which decays monoexponentially with a time constant of 900 ns and 235 ns at each temperature, respectively, in ethanol. The transient can be attained with visible excitation (420 nm to 532 nm) and it is assigned to be intra-ligand charge transfer (ILCT) in nature. It was determined from transient absorption experiments that the ILCT excited state of Rh(phi)(2)(phen)(3+) lies approximately 2.0 eV above the ground state and that it is a powerful oxidizing agent with E(1/2)([Rh](3+*/2+)) approximate to 2.0 V versus NHE. The transient absorption experiments with electron donors reveal that the one-electron reduced Rh(phi)(2)(phen)(2+) absorbs at 540 nm with epsilon approximate to 3300 M(-1) cm(-1). [References: 40]
机译:研究了Rh(phi)(2)(phen)(3+)(phi = 9,10-菲醌二亚胺,phen = 1,10-菲咯啉)的激发态性质和反应性,并与相关铑(III)进行了比较)和锌(II)配合物。在77 K Rh(phi)(2)(phen)(3+)表现出phi和phen配体的LC(3)pi pi *双发射,其能量分别为2.8 eV和3.0 eV,并且双指数衰减可以适合5 ns(98%)和60 ns(2%)的使用寿命组件。通过在77 K和298 K处的瞬态吸收观察到寿命更长的瞬态,在乙醇中,在每个温度下,该瞬态吸收分别以900 ns和235 ns的时间常数单指数衰减。瞬态可以通过可见光激发(420 nm至532 nm)实现,并且本质上被指定为配体内电荷转移(ILCT)。根据瞬态吸收实验确定,Rhphi(2)(phen)(3+)的ILCT激发态比基态高约2.0 eV,并且它是具有E(1/2)的强氧化剂([Rh](3 + * / 2+))对NHE约为2.0V。电子给体的瞬态吸收实验表明,单电子还原的Rh(phi)(2)(phen)(2+)在540 nm处的吸收量约为3300 M(-1)cm(-1)。 [参考:40]

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