Dipartimento di Chimica e Tecnologie del Farmaco, Università di Roma La Sapienza, P.le A. Moro 5, I-00185, Roma, Italy.
Inorg Chem. 2011 May 16;50(10):4445-52. doi: 10.1021/ic200073v. Epub 2011 Apr 8.
Model ferric heme nitrosyl complexes, Fe(TPP)(NO) and Fe(TPFPP)(NO), where TPP is the dianion of 5,10,15,20-tetrakis-phenyl-porphyrin and TPFPP is the dianion of 5,10,15,20-tetrakis-pentafluorophenyl-porphyrin, have been obtained as isolated species by the gas phase reaction of NO with Fe(III)(TPP) and Fe(III) (TPFPP) ions delivered in the gas phase by electrospray ionization, respectively. The so-formed nitrosyl complexes have been characterized by vibrational spectroscopy also exploiting (15)N-isotope substitution in the NO ligand. The characteristic NO stretching frequency is observed at 1825 and 1859 cm(-1) for Fe(III)(TPP)(NO) and Fe(III)(TPFPP)(NO) ions, respectively, providing reference values for genuine five-coordinate Fe(III)(NO) porphyrin complexes differing only for the presence of either phenyl or pentafluorophenyl substituents on the meso positions of the porphyrin ligand. The vibrational assignment is aided by hybrid density functional theory (DFT) calculations of geometry and electronic structure and frequency analysis which clearly support a singlet spin electronic state for both Fe(TPP)(NO) and Fe(TPFPP)(NO) complexes. Both TD-DFT and CASSCF calculations suggest that the singlet ground state is best described as Fe(II)(NO(+)) and that the open-shell AFC bonding scheme contribute for a high-energy excited state. The kinetics of the NO addition reaction in the gas phase are faster for Fe(III)(TPFPP) ions by a relatively small factor, though highly reliable because of a direct comparative evaluation. The study was aimed at gaining vibrational and reactivity data on five-coordinate Fe(III)(NO) porphyrin complexes, typically transient species in solution, ultimately to provide insights into the nature of the Fe(NO) interaction in heme proteins.
模型铁血红素亚硝酰配合物[Fe(TPP)(NO)]+和[Fe(TPFPP)(NO)]+,其中 TPP 是 5,10,15,20-四苯基卟啉的二价阴离子,TPFPP 是 5,10,15,20-四(五氟苯基)卟啉的二价阴离子,通过气相反应分别获得了作为孤立物种的 NO 与气相中电喷雾电离输送的[Fe(III)(TPP)]+和[Fe(III)(TPFPP)]+离子。通过振动光谱学也利用 NO 配体中的(15)N 同位素取代,对形成的亚硝酰配合物进行了表征。[Fe(III)(TPP)(NO)]+和[Fe(III)(TPFPP)(NO)]+离子的特征 NO 伸缩频率分别观察到在 1825 和 1859 cm-1,为真正的五配位 Fe(III)(NO)卟啉配合物提供参考值,它们仅在卟啉配体的中位置上存在苯基或五氟苯基取代基。振动分配得到了几何形状和电子结构以及频率分析的混合密度泛函理论(DFT)计算的帮助,这些计算清楚地支持了两种[Fe(TPP)(NO)]+和[Fe(TPFPP)(NO)]+配合物的单重自旋电子态。TD-DFT 和 CASSCF 计算均表明,单重基态最好描述为 Fe(II)(NO(+)),并且开壳 AFC 键合方案有助于高能激发态。气相中 NO 添加反应的动力学对[Fe(III)(TPFPP)]+离子更快,相对较小的因素,虽然由于直接比较评估而非常可靠。该研究旨在获得五配位 Fe(III)(NO)卟啉配合物的振动和反应性数据,通常是溶液中的瞬态物种,最终提供对血红素蛋白中 Fe(NO)相互作用性质的深入了解。