n掺杂金属卟啉的电子性质和氧化还原化学

IF 0.9 4区 化学 Q4 CHEMISTRY, MULTIDISCIPLINARY
Frederico F. Martins, M. Swart
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引用次数: 0

摘要

本文研究了金属对n -杂化卟啉特征Soret带的影响。我们使用DFT计算来研究NCP-2H同分异构体的低洼区域如何受到引入具有不同([公式:见文],[公式:见文],[公式:见文],[公式:见文]和[公式:见文]d电子构型的过渡金属的影响。这些配合物的自旋基态主要取决于未配对电子的数量,无论是否存在轴向配体。对电子分布和自旋密度的分析表明,这些未配对的电子通常被n掺杂的卟啉环所包藏,而不是在金属上。时间相关的DFT结果表明,卟啉的芳香体系在n混淆异构体中被破坏:而不是典型的大Soret带,这现在产生了两个强度低得多的峰。大多数金属卟啉表现出类似的光学性质,HOMO/LUMO轨道表现出金属/卟啉的混合特征。唯一的例外是铑金属卟啉,它表现出配体到金属的电荷转移带,随着配体场的增加,强度增加。这表明Rh是唯一一个轨道能量高于配体的金属,这表明它是唯一一个在金属上发生氧化还原过程的系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electronic properties and redox chemistry of N-confused metalloporphyrins
Here we study the effect of metals on the characteristic Soret band of N-confused porphyrins. We used DFT calculations to study how this low-lying region of the spectrum of the NCP-2H isomer is affected by the introduction of transition metals with various ([Formula: see text], [Formula: see text], [Formula: see text] and [Formula: see text] d-electron configurations. The spin ground state of these complexes is mostly dependent on the number of unpaired electrons, both with and without the presence of an axial ligand. The analysis of the electronic distribution and spin density showed that these unpaired electrons are often harbored by the N-confused porphyrin ring instead of on the metal. Time-dependent DFT results indicated that the aromatic system of porphyrin is disrupted in the N-confused isomer: instead of the typical large Soret band, this now gives rise to two peaks of much lower intensity. Most metallo-porphyrins exhibited similar optical properties, with the HOMO/LUMO orbitals showing a mixed metal/porphyrin character. The only exception was the Rh metalloporphyrin that exhibited a ligand-to-metal charge transfer band with increasing intensity as function of the ligand field. This suggests Rh is the only metal whose orbitals are higher in energy than the ligand’s, indicating that it is the only system where the redox processes occur on the metal.
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来源期刊
CiteScore
2.10
自引率
20.00%
发文量
62
审稿时长
1 months
期刊介绍: The Journal of Porphyrins and Phthalocyanines (JPP) covers research in the chemistry, physics, biology and technology of porphyrins, phthalocyanines and related macrocycles. Research papers, review articles and short communications deal with the synthesis, spectroscopy, processing and applications of these compounds.
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