首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >ABSORPTION, FLUORESCENCE, AND MAGNETIC CIRCULAR DICHROISM SPECTRA OF AND MOLECULAR ORBITAL CALCULATIONS ON TETRABENZOTRIAZAPORPHYRINS AND TETRANAPHTHOTRIAZAPORPHYRINS [Review]
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ABSORPTION, FLUORESCENCE, AND MAGNETIC CIRCULAR DICHROISM SPECTRA OF AND MOLECULAR ORBITAL CALCULATIONS ON TETRABENZOTRIAZAPORPHYRINS AND TETRANAPHTHOTRIAZAPORPHYRINS [Review]

机译:四苯并三氮杂卟啉和四氮杂萘并三氮杂卟啉的吸收,荧光和磁性圆二色性及分子轨道计算[综述]

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Extensive analyses of the electronic absorption, magnetic circular dichroism (MCD),;nd fluorescence emission and excitation spectra of peripherally-substituted tetrabenzotriazaporphyrin (TBTrAP) and tetranaphthotriazaporphyrin (TNTrAP) complexes are reported. ZINDO calculations of the UV-visible absorption spectra of free base and dianionic (deprotonated) TBTrAP and TNTrAP complexes are described. The optical spectra of TBTrAP and TNTrAP are assigned on the basis of molecular orbital (MO) calculations using the ZINDO program and the theory that has been developed previously to account for the spectral properties of porphyrin and phthalocyanine complexes. Analysis of the absorption and MCD spectra of the ring-reduced anion radical species of Pc and TBTrAP complexes shows that the optical spectra of [TBTrAP(-3)](-) are markedly different from those oi analogous Pc species. EPR signals observed at 77 It for Pc(-3) radical species provide evidence for a doublet ground state, while the absence of an EPR signal for [TBTrAP(-3)](-) indicates that the species dimerizes upon reduction. The absorption and MCD spectra of the dimeric [TBTrAP(-3)](-) species are found to be consistent with the band assignment developed previously to account for the spectral properties of main group Pc anion radicals. [References: 103]
机译:广泛分析了外围取代的四苯并三氮杂卟啉(TBTrAP)和四萘并三氮杂卟啉(TNTrAP)配合物的电子吸收,磁圆二色​​性(MCD),荧光发射和激发光谱。 ZINDO计算了游离碱和双阴离子(去质子化)TBTrAP和TNTrAP配合物的UV-可见吸收光谱。 TBTrAP和TNTrAP的光谱是根据使用ZINDO程序的分子轨道(MO)计算以及先前为解释卟啉和酞菁配合物的光谱特性而开发的理论来分配的。分析Pc和TBTrAP配合物的环还原阴离子基团的吸收光谱和MCD光谱表明,[TBTrAP(-3)](-)的光谱与相似的Pc光谱有显着差异。对于Pc(-3)自由基物质,在77 It处观察到的EPR信号为双峰基态提供了证据,而对于[TBTrAP(-3)](-),没有EPR信号表明该物种在还原时会二聚。发现二聚体[TBTrAP(-3)](-)的吸收光谱和MCD光谱与先前开发的能说明主要Pc阴离子自由基的光谱特性的谱带分配一致。 [参考:103]

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