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镍(II)2,2'-二甲基-2-氮杂-2'-碳杂卟啉与苯基格氏试剂、苯基锂和正丁基锂的反应

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

作者信息

Chmielewski P J, Latos-Grazyński L

机构信息

Department of Chemistry, University of Wrocław, 14 F. Joliot-Curie Street, 50-383 Wrocław, Poland.

出版信息

Inorg Chem. 2000 Dec 11;39(25):5639-47. doi: 10.1021/ic000052p.

Abstract

Addition of a phenyl Grignard reagent to a toluene solution of the nickel(II) chloride complex of a dimethylated inverted porphyrin, (2-NCH3-21-CH3CTPP)NiIICl (1), at 203 K results in the formation of a rare paramagnetic (sigma-phenyl)nickel(II) species, (2-NCH3-21-CH3CTPP)NiIIPh (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 1H NMR and 2H NMR spectra. The (sigma-phenyl)nickel(II) compound 2 is in the high-spin ground electronic state (dxy)2(dxz)2(dyz)2(dz2)1(dx2-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)NiIIPh (2). One-electron reduction with excess PhLi yields [(2-NCH3-21-CH3CTPP)NiIIPh]- (3), which can be also generated by independent routes, e.g., by reduction of (2-NCH3-21-CH3CTPP)NiIIPh using lithium triethylborohydride or tetrabutylammonium borohydride. The spectroscopic data indicate that (2-NCH3-21-CH3CTPP)NiIIPh (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 (at 253 K)). A single species, 4, is detected in the 1H 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 (at 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, g1 = 2.237, g2 = 2.092, g3 = 2.090; 6, g1 = 2.115, g2 = 2.030, g3 = 1.940 (in frozen toluene solution at 77 K)).

摘要

在203K下,将苯基格氏试剂加入到二甲基化反式卟啉(2-NCH3-21-CH3CTPP)NiIICl(1)的氯化镍(II)配合物的甲苯溶液中,会形成一种罕见的顺磁性(σ-苯基)镍(II)物种,即(2-NCH3-21-CH3CTPP)NiIIPh(2)。2中σ-苯基的配位情况由1H NMR和2H NMR谱中三个独特的σ-苯基共振峰模式(邻位375.0 ppm;间位108.94 ppm;对位35.68 ppm(在283K))确定。(σ-苯基)镍(II)化合物2处于高自旋基态电子态(dxy)2(dxz)2(dyz)2(dz2)1(dx2-y2)1,这通过1和2中赤道配体的NMR谱的相似性得到证实。用苯基锂滴定1会生成(2-NCH3-21-CH3CTPP)NiIIPh(2)。用过量的PhLi进行单电子还原会生成[(2-NCH3-21-CH3CTPP)NiIIPh]-(3),它也可以通过独立的途径生成,例如用三乙基硼氢化锂或四丁基铵硼氢化锂还原(2-NCH3-21-CH3CTPP)NiIIPh。光谱数据表明(2-NCH3-21-CH3CTPP)NiIIPh(2)进行单电子还原时分子几何结构没有实质性破坏。3中存在两个顺磁性中心,即高自旋镍(II)和碳卟啉阴离子自由基,这会导致光谱模式出现显著变化,如吡咯共振峰的高场和低场位置(103.78、96.66、-25.35、-50.97、-92.15、-114.83 ppm(在253K))以及中位苯基共振峰符号的交替变化(邻位-77.81、-79.34 ppm;间位48.77、48.04 ppm;对位-85.65、-86.46 ppm(在253K))。在用正丁基锂滴定1的过程中检测到单一物种4。形成单电子或双电子还原物种,即[(2-NCH3-21-CH3CTPP)NiBu]-或[(2-NCH3-21-CH3CTPP)NiBu]2-,被认为可以解释4的光谱性质(吡咯17.33、15.45、-5.79、-7.74、-14.62、-58.14 ppm;21-CH3 3 ppm(在203K))。4的超精细位移的温度依赖性表现出明显的反居里行为,这可以通过顺磁性和抗磁性状态之间的温度依赖性自旋平衡来解释,随着温度降低,抗磁性性质逐渐增强。将2至4加热会通过轴向镍-顶端碳键的均裂/异裂完全分解。对于2或3,该过程会产生两种化合物5和6的混合物,通过EPR光谱检测到,表明g张量的各向异性(5,g₁ = 2.237,g₂ = 2.092,g₃ = 2.090;6,g₁ = 2.115,g₂ = 2.030,g₃ = 1.940(在77K的冷冻甲苯溶液中))。

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