Iron(III)-nitro porphyrins: Theoretical exploration of a unique class of reactive molecules

被引:35
作者
Conradie, Jeanet
Ghosh, Abhik [1 ]
机构
[1] Univ Tromso, Dept Chem, N-9037 Tromso, Norway
[2] Univ Free State, Dept Chem, ZA-9300 Bloemfontein, South Africa
关键词
D O I
10.1021/ic060362t
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
DFT(PW91/TZP) calculations, including full geometry optimizations, have been carried on [Fe-II(P)(NO2)](-), Fe-III(P)( NO2), [Fe-II(P)(NO2)(py)]-, Fe-III(P)(NO2)(py), [Fe-III(P)(NO2)(2)](-), and Fe-III(P)(NO2)(NO), where P is the unsubstituted porphine dianion, as well as on certain picket fence porphyrin (TPivPP) analogues. The bonding in [Fe-II(P)(NO2)](-) and Fe-III(P)(NO2), as well as in their pyridine adducts, reveals a sigma-donor interaction of the nitrite HOMO and the Fe d(z)(2) orbital, where the Fe-N-nitro axis is defined as the z direction and the nitrite plane is identified as xz. Both molecules also feature a pi-acceptor interaction of the nitrite LUMO and the Fe d(yz) orbital, whereas the SOMO of the Fe((III))-nitro complexes may be identified as d(xz). The Fe((III))-nitro porphyrins studied all exhibit extremely high adiabatic electron affinities, ranging from about 2.5 eV for Fe-III(P)(NO2) and Fe-III(P)(NO2)(py) to about 3.4 eV for their TPivPP analogues. Transition-state optimizations for oxygen-atom transfer from Fe-III(P)(NO2) and Fe-III(P)(NO2)(py) to dimethyl sulfide yielded activation energies of 0.45 and 0.77 eV, respectively, which is qualitatively consistent with the observed far greater stability of Fe-III(TPivPP)(NO2)(py) relative to Fe-III(TPivPP)(NO2). Addition of NO to yield {FeNO}(6) nitro - nitrosyl adducts such as Fe(P)(NO2)(NO) provides another mechanism whereby Fe(III)-nitro porphyrins can relieve their extreme electron affinities. In Fe(P)(NO2)(NO), the bonding involves substantial Fe-NO pi-bonding, but the nitrite acts essentially as a simple sigma-donor, which accounts for the relatively long Fe-N-nitro distance in this molecule.
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页码:4902 / 4909
页数:8
相关论文
共 40 条
[11]   Carbonyl tilting and bending potential energy surface of carbon monoxyhemes [J].
Ghosh, A ;
Bocian, DF .
JOURNAL OF PHYSICAL CHEMISTRY, 1996, 100 (16) :6363-6367
[12]   Metalloporphyrin-NO bonding: Building bridges with organometallic chemistry [J].
Ghosh, A .
ACCOUNTS OF CHEMICAL RESEARCH, 2005, 38 (12) :943-954
[13]   Variation of oxo-transfer reactivity of (nitro)cobalt picket fence porphyrin with oxygen-donating ligands [J].
Goodwin, J ;
Kurtikyan, T ;
Standard, J ;
Walsh, R ;
Zheng, B ;
Parmley, D ;
Howard, J ;
Green, S ;
Mardyukov, A ;
Przybyla, DE .
INORGANIC CHEMISTRY, 2005, 44 (07) :2215-2223
[14]   The reaction between nitrite and deoxyhemoglobin - Reassessment of reaction kinetics and stoichiometry [J].
Huang, KT ;
Keszler, A ;
Patel, N ;
Patel, RP ;
Patel, RP ;
Gladwin, MT ;
Kim-Shapiro, DB ;
Hogg, N .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2005, 280 (35) :31126-31131
[15]   Inhaled nebulized nitrite is a hypoxia-sensitive NO-dependent selective pulmonary vasodilator [J].
Hunter, CJ ;
Dejam, A ;
Blood, AB ;
Shields, H ;
Kim-Shapiro, D ;
Machado, RF ;
Tarekegn, S ;
Mulla, N ;
Hopper, AO ;
Schechter, AN ;
Power, GG ;
Gladwin, MT .
NATURE MEDICINE, 2004, 10 (10) :1122-1127
[16]   Structural characterization of the picket fence (TpivPP) porphyrins Co(TpivPP), Co(TpivPP)(NO2)(1-MeIm), and Co(TpivPP)(NO2)(1,2-Me2Im) [J].
Jene, PG ;
Ibers, JA .
INORGANIC CHEMISTRY, 2000, 39 (17) :3823-3827
[17]   The reaction between nitrite and hemoglobin: the role of nitrite in hemoglobin-mediated hypoxic vasodilation [J].
Kim-Shapiro, DB ;
Gladwin, MT ;
Patel, RP ;
Hogg, N .
JOURNAL OF INORGANIC BIOCHEMISTRY, 2005, 99 (01) :237-246
[18]  
LEE J, 2004, INORG CHEM, V43, P2932
[19]   NO and NOx interactions with group 8 metalloporphyrins [J].
Lim, MD ;
Lorkovic, IM ;
Ford, PC .
JOURNAL OF INORGANIC BIOCHEMISTRY, 2005, 99 (01) :151-165
[20]   Reactions of nitrogen oxides with heme models.: Characterization of NO and NO2 dissociation from Fe(TPP)(NO2)(NO) by flash photolysis and rapid dilution techniques:: Fe(TPP)(NO2) as an unstable intermediate [J].
Lim, MD ;
Lorkovic, IM ;
Wedeking, K ;
Zanella, AW ;
Works, CF ;
Massick, SM ;
Ford, PC .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2002, 124 (33) :9737-9743