Reactions of nickel(II) 2,21-dimethyl-2-aza-21-carbaporphyrin with phenyl Grignard reagents, phenyllithium, and n-butyllithium

被引:37
作者
Chmielewski, PJ [1 ]
Latos-Grazynski, L [1 ]
机构
[1] Univ Wroclaw, Dept Chem, PL-50383 Wroclaw, Poland
关键词
D O I
10.1021/ic000052p
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Addition of a phenyl Grignard reagent to a toluene solution of the nicker(II) chloride complex of a dimethylated inverted porphyrin, (2-NCH3-21-CH3CTPP)(NiCl)-Cl-II (1), at 203 K results in the formation of a rare paramagnetic (sigma -phenyl)nickel(II) species, (2-NCH3-21-CH3CTPP)(NiPh)-Ph-II (2). The coordination of the sigma -phenyl in 2 is determined by a unique pattern of three sigma -phenyl resonances (ortho 375.0 ppm; meta 108.94 ppm; para 35.68 ppm (at 283 K)) in the H-1 NMR and H-2 NMR spectra. The (sigma -phenyl)nickel(II) compound 2 is in the high-spin ground electronic state (d(xy))(2)(d(xz))(2)(d(yz))(2)(d(z2))(1)(d(x2-y2))(1), as confirmed by similarity of the NMR spectra of the equatorial ligand in 1 and 2. Titration of 1 with phenyllithium produces (2-NCH3-21-CH3CTPP)(NiPh)-Ph-II (2). One-electron reduction with excess PhLi yields [(2-NCH3-21-CH3CTPP)(NiPh)-Ph-II](-) (3), which can be also generated by independent routes, e.g., by reduction of (2-NCH3-21-CH3CTPP)(NiPh)-Ph-II using lithium triethylborohydride or tetrabutylammonium borohydride. The spectroscopic data indicate that (2-NCH3-21-CH3CTPP)(NiPh)-Ph-II (2) undergoes one-electron reduction without a substantial disruption of the molecular geometry. The presence of two paramagnetic centers in 3, i.e., the high-spin nickel(II) and the carbaporphyrin anion radical, produces remarkable variations in a spectral patterns, such as the upfield and downfield positions of pyrrole resonances (103.78, 96.66, -25.35, -50.97, -92.15, -114.83 ppm (at 253 K)) and sign alternations of the meso-phenyl resonances (ortho -77.81, -79.34 ppm; meta 48.77, 48.04 ppm; para -85.65, -86.46 ppm fat 253 K)). A single species, 4, is detected in the H-1 NMR titration of 1 with n-butyllithium. The formation of one- or two-electron-reduced species, [(2-NCH3-21-CH3CTPP)NiBu](-) or [(2-NCH3-21-CH3CTPP)NiBu](2-), respectively, is considered to account for the spectroscopic properties of 4 (pyrrole 17.33, 15.45, -5.79, -7.74, -14.62, -58.14 ppm; 21-CH3 3 ppm fat 203 K)). The temperature dependence of the hyperfine shifts of 4 demonstrates pronounced anti-Curie behavior, interpreted in terms of a temperature-dependent spin equilibrium between diamagnetic and paramagnetic states with diamagnetic properties approached as the temperature is lowered. Warming of 2-4 results in complete decomposition via homolytic/heterolytic cleavage of an axial nickel-apical carbon bond. In the case of 2 or 3, the process yields a mixture of two compounds, 5 and 6, which are detected by EPR spectroscopy, demonstrating the anisotropy of the g tensor (5, g(1) = 2.237, g(2) = 2.092, g(3) = 2.090; 6, g(1) = 2.115, g(2) = 2.030, g(3) = 1.940 (in frozen toluene solution at 77 K)).
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页码:5639 / 5647
页数:9
相关论文
共 81 条
[61]   COENZYME F430 FROM METHANOGENIC BACTERIA - DETECTION OF A PARAMAGNETIC METHYLNICKEL(II) DERIVATIVE OF THE PENTAMETHYL ESTER BY H-2-NMR SPECTROSCOPY [J].
LIN, SK ;
JAUN, B .
HELVETICA CHIMICA ACTA, 1991, 74 (08) :1725-1738
[62]   NUCLEAR-MAGNETIC-RESONANCE STUDY OF THE MOLECULAR AND ELECTRONIC-STRUCTURE OF NICKEL(II) TETRAPHENYL-21-THIAPORPHYRINS [J].
LISOWSKI, J ;
LATOSGRAZYNSKI, L ;
SZTERENBERG, L .
INORGANIC CHEMISTRY, 1992, 31 (10) :1933-1940
[63]  
Liu BY, 1996, CHEM COMMUN, P2141
[64]   MODELS FOR PEROXIDASE COMPOUND .1. GENERATION AND SPECTROSCOPIC CHARACTERIZATION OF NEW OXOFERRYL PORPHYRIN PI CATION RADICAL SPECIES [J].
MANDON, D ;
WEISS, R ;
JAYARAJ, K ;
GOLD, A ;
TERNER, J ;
BILL, E ;
TRAUTWEIN, AX .
INORGANIC CHEMISTRY, 1992, 31 (21) :4404-4409
[65]   Formation and reactivity of paramagnetic organometallic nickel complexes of 21-oxa- and 21-selenaporphyrins 1H NMR and EPR investigations [J].
Pacholska, E ;
Chmielewski, PJ ;
Latos-Grazynski, L .
INORGANICA CHIMICA ACTA, 1998, 273 (1-2) :184-190
[66]   Disproportionation of iron(III) porphyrin pi-cation radicals in the presence of sterically hindered pyridines. Spectroscopic detection of asymmetric highly oxidized intermediates [J].
Rachlewicz, K ;
LatosGrazynski, L .
INORGANIC CHEMISTRY, 1996, 35 (05) :1136-1147
[67]   Kinetics and mechanism of alkyl transfer from organocobalt(III) to nickel(I): Implications for the synthesis of acetyl coenzyme A by CO dehydrogenase [J].
Ram, MS ;
Riordan, CG ;
Yap, GPA ;
LiableSands, L ;
Rheingold, AL ;
Marchaj, A ;
Norton, JR .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1997, 119 (07) :1648-1655
[68]   Ligand-bridged heterobimetallic polymers: Silver(I)-benzothiadiazole-nickel porphyrin cation-benzothiadiazole arrays [J].
Renner, MW ;
Barkigia, KM ;
Melamed, D ;
Smith, KM ;
Fajer, J .
INORGANIC CHEMISTRY, 1996, 35 (18) :5120-5121
[69]   MODELS OF FACTOR-430 - STRUCTURAL AND SPECTROSCOPIC STUDIES OF NI(II) AND NI(I) HYDROPORPHYRINS [J].
RENNER, MW ;
FURENLID, LR ;
BARKIGIA, KM ;
FORMAN, A ;
SHIM, HK ;
SIMPSON, DJ ;
SMITH, KM ;
FAJER, J .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1991, 113 (18) :6891-6898
[70]   CATION AND ANION-RADICALS OF (5,15-DIMETHYL-2,3,7,8,12,13,17,18-OCTAETHYL-5H,15H-PORPHINATO)NICKEL(II) - COMPARISON OF THE NICKEL-COMPLEXES OF PORPHODIMETHENE AND CHLORIN CHROMOPHORES [J].
RENNER, MW ;
BUCHLER, JW .
JOURNAL OF PHYSICAL CHEMISTRY, 1995, 99 (20) :8045-8049