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首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Studies on electronic structures and related properties of complexes M(tap)(3)(2+) (M = Fe, Ru, Os) by the DFT method
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Studies on electronic structures and related properties of complexes M(tap)(3)(2+) (M = Fe, Ru, Os) by the DFT method

机译:DFT法研究M(tap)(3)(2+)(M = Fe,Ru,Os)配合物的电子结构和相关性质

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Studies on a series of complexes M(tap)(3)(2+) (M = Fe, Ru, Os; tap = 1,4,5,8-tetraazaphenanthrene) are carried out using the DFT method at the B3LYP/LanL2DZ level. The electronic structures and related chemical properties of complexes M(tap)(3)(2+), e.g the energies and components of some frontier molecular orbitals. the spectral properties. and the net charge populations of some main atoms of the complexes, etc. have been investigated. In addition. computations on the complex Ru(phen)(3)(2+)(phen = 1,10-phenanthroline) are also performed for comparison. The computational results show some very interesting trends in electronic structures and related properties of complexes M(tap)(3)(2+). First. the computational energies of some frontier molecular orbitals of Ru(tap)(3)(2+) are all lower than those of Ru(phen)(3)(2+). In particular, the energies of LUMOs of the complexes Os(tap)(3)(2+) and Ru(tap)(3)(2+) are all rather low and their electron affinities are rather high, leading to the prediction that an electron is very easily transferred from DNA guanine base to the LUMO of the complexes. This may be a major reason why these cations are excellent photoreagents for DNA. Second. the components of the HOMO of the four complexes all arise mainly from d orbitals of the central metal ions, and the components of the LUMO arise mainly from p orbitals of C and N atoms in the ligands, so their electronic ground state bands are theoretically all assigned to singlet metal-to-ligand charge-transfer ((MLCT)-M-1) transitions in absorption spectra, similar to those of Ru(bpy)(3)(2+). Third, for M(tap)(3)(2+), the most negative charges are populated on N1, with the next populated on N4. Fourth. the chemical stabilities (S) of the complexes are in order S-III > S-II > S-I, according to coordination energy computations. In addition, the central atom M has little effect on the coordination bond lengths and bond angles of the complexes. The obtained results should be important references for the synthesis of the complexes, mechanistic analysis of their photochemistry, electrochemistry and catalysis chemistry. [References: 54]
机译:使用DFT方法在B3LYP / LanL2DZ上对一系列配合物M(tap)(3)(2+)(M = Fe,Ru,Os; tap = 1,4,5,8-四氮杂菲)进行研究水平。配合物M(tap)(3)(2+)的电子结构和相关化学性质,例如某些前沿分子轨道的能量和成分。光谱特性。研究了络合物等主要原子的净电荷数。此外。还对复数Ru(phen)(3)(2 +)(phen = 1,10-菲咯啉)进行了计算以进行比较。计算结果表明,在电子结构和配合物M(tap)(3)(2+)的相关特性中,一些非常有趣的趋势。第一。 Ru(tap)(3)(2+)的某些前沿分子轨道的计算能都比Ru(phen)(3)(2+)的计算能低。特别是,配合物Os(tap)(3)(2+)和Ru(tap)(3)(2+)的LUMO的能量都非常低,并且它们的电子亲和力也很高,因此可以预测电子很容易从DNA鸟嘌呤碱基转移到复合物的LUMO。这可能是这些阳离子是DNA优异的光试剂的主要原因。第二。这四个络合物的HOMO成分主要来自中心金属离子的d轨道,而LUMO的成分主要来自配体中C和N原子的p轨道,因此它们的电子基态带在理论上都是分配给单重态金属到配体的电荷转移((MLCT)-M-1)跃迁,类似于Ru(bpy)(3)(2+)的跃迁。第三,对于M(tap)(3)(2+),负电荷最多的是N1,第二个负电荷是N4。第四。根据配位能量计算,配合物的化学稳定性(S)为S-III> S-II> S-I。另外,中心原子M对配合物的配位键长和键角几乎没有影响。所得结果应为配合物的合成,其光化学,电化学和催化化学的机理分析提供重要参考。 [参考:54]

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