NMR and EPR studies of the bis(pyridine) and bis(tert-butyl isocyanide) complexes of iron(III) octaethylchlorin

被引:15
作者
Cai, S [1 ]
Lichtenberger, DL [1 ]
Walker, FA [1 ]
机构
[1] Univ Arizona, Dept Chem, Tucson, AZ 85721 USA
关键词
D O I
10.1021/ic0490876
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The NMR and EPR spectra of a series of pyridine complexes [(OEC)Fe(L)(2)](+) (L = 4-Me2NPy, Py, and 4-CNPy) have been investigated. The EPR spectra at 4.2 K suggest that, with a decrease of the donor strength of the axial ligands, the complexes change their ground state from (d(xy))(2)(d(xz)d(yz))(3) to (d(xz)d(yz))(4)(d(xy))(1). The NMR data from 303 to 183 K show. that at any temperature within this range the chemical shifts of pyrrole-8,17-CH2 protons increase with a decrease in the donor strength of the axial ligands. The full peak assignments of the [(OEC)Fe(L)(2)](+) complexes of this study have been made from COSY and NOE difference experiments. The pyrrole-8,17-CH2 and pyrroline protons show large chemical shifts (hence indicating large 7 spin density on the adjacent carbons which are pan of the pi system), while pyrrole-12,13-CH2 and -7,18-CH2 protons show much smaller chemical shifts, as predicted by the spin densities obtained from molecular orbital calculations, both Huckel and DFT; the DFT calculations additionally show close energy spacing of the highest five filled orbitals (of the Fe(H) complex) and strong mixing of metal and chlorin character in these orbitals that is sensitive to the donor strength of the axial substituents. The pattern of chemical shifts of the pyrrole-CH2 protons of [(OEC)Fe(t-BuNC)(2)](+) looks somewhat like that of [(OEC)Fe(4-Me2NPY)(2)](+), while the chemical shifts of the meso-protons are qualitatively similar to those of [(OEP)Fe(t-BuNC)(2)](+). The temperature dependence of the chemical shifts of [(OEC)Fe(t-BuNC)(2)](+) shows that it has a mixed (d(xz)d(yz))(4)(d(xy))(1) and (d(xy))(2)(d(xz),d(yz))(3) electron configuration that cannot be resolved by temperature-dependent fitting of the proton chemical shifts, with a S = 5/2 excited state that lies somewhat more than 2kT at room temperature above the ground state; the observed pattern of chemical shifts is the approximate average of those expected for the two S = 1/2 electronic configurations, which involve the a-symmetry SOMO of a planar chlorin ring with the unpaired electron predominantly in the d(yz) orbital and the b-symmetry SOMO of a ruffled chlorin ring with the unpaired electron predominantly in the d(xy) orbital. A rapid interconversion between the two, with calculated vibrational frequency of 22 cm(-1), explains the observed pattern of chemical shifts, while a favoring of the ruffled conformation explains the negative chemical shift (and thus the negative spin density at the cc-pyrroline ring carbons), of the pyrroline-H of [TPCFe(t-BuNC)(2)]CF3SO3 (Simonneaux, G.; Kobeissi, M. J. Chem. Soc., Dalton Trans. 2001, 1587-1592). Peak assignments for high-spin (OEC)FeCl have been made by saturation transfer techniques that depend on chemical exchange between this complex and its bis-4-Me2NPy adduct. The contact shifts of the pyrrole-CH2 and meso protons of the high-spin complex depend on both sigma and pi spin delocalization due to contributions from three of the occupied frontier orbitals of the chlorin ring.
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页码:1890 / 1903
页数:14
相关论文
共 75 条
[1]   Inner-sphere electron-transfer reorganization energies of zinc porphyrins [J].
Amashukeli, X ;
Gruhn, NE ;
Lichtenberger, DL ;
Winkler, JR ;
Gray, HB .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2004, 126 (47) :15566-15571
[2]   SPECTRAL PROPERTIES OF CIS-METALLOOCTAETHYLCHLORIN AND TRANS-METALLOOCTAETHYLCHLORIN - EFFECTS OF PYRROLINE RING STEREOCHEMISTRY AND MACROCYCLIC CONFORMATION [J].
ANDERSSON, LA ;
LOEHR, TM ;
STERSHIC, MT ;
STOLZENBERG, AM .
INORGANIC CHEMISTRY, 1990, 29 (12) :2278-2285
[3]   1H pulsed ENDOR and ESEEM evidence that the bis-imidazole complexes of iron(III) tetraphenylchlorin and tetraphenylporphyrin have the same order of g values, and the same electronic ground state [J].
Astashkin, AV ;
Raitsimring, AM ;
Walker, FA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2001, 123 (09) :1905-1913
[4]   Analysis of the temperature dependence of the 1H and 13C isotropic shifts of horse heart ferricytochrome c:: Explanation of Curie and anti-Curie temperature dependence and nonlinear pseudocontact shifts in a common two-level framework [J].
Banci, L ;
Bertini, I ;
Luchinat, C ;
Pierattelli, R ;
Shokhirev, NV ;
Walker, FA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1998, 120 (33) :8472-8479
[5]  
BERZOFSKY JA, 1972, J BIOL CHEM, V247, P3783
[6]  
Bravo J, 1999, PROTEINS, V34, P155, DOI 10.1002/(SICI)1097-0134(19990201)34:2<155::AID-PROT1>3.0.CO
[7]  
2-P
[8]   Magnetic resonance and structural investigations of (Monooxooctaethylchlorinato)iron(III) chloride and its bis(imidazole) complex [J].
Cai, S ;
Belikova, E ;
Yatsunyk, LA ;
Stolzenberg, AM ;
Walker, FA .
INORGANIC CHEMISTRY, 2005, 44 (06) :1882-1889
[9]  
Cai S., UNPUB
[10]  
CHANG CK, 1986, J BIOL CHEM, V261, P8593