Department of Chemistry, Indiana University, 800 E. Kirkwood Avenue, Bloomington, Indiana 47405-7102, United States.
Inorg Chem. 2013 Aug 19;52(16):9511-21. doi: 10.1021/ic4011746. Epub 2013 Aug 2.
Synthesis and characterization of divalent nickel complexed by 2-pyridylpyrrolide bidentate ligands are reported, as possible precursors to complexes with redox active ligands. Varied substituents on the pyrrolide, two CF3 (L(2)), two (t)Bu (L(0)), and one of each type (L(1)) are employed and the resulting Ni(L(n))2 complexes show different Lewis acidity toward CO, H2O, tetrahydrofuran (THF), or MeCN, the L(2) case being the most acidic. Density functional theory calculations show that the frontier orbitals of all three Ni(L(n))2 species are localized at the pyrrolide groups of both ligands and Ni(L(n))2(+) can be detected by mass spectrometry and in cyclic voltammograms (CVs). Following cyclic voltammetry studies, which show electroactivity primarily in the oxidative direction, reactions with pyridine N-oxide or Br2 are reported. The former yield simple bis adducts, Ni(L(2))2(pyNO)2 and the latter effects electrophilic aromatic substitution of the one pyrrolide ring hydrogen for both chelates, leaving it brominated.
报道了二价镍与 2-吡啶基吡咯烷双齿配体配位的合成和表征,这些配体可能是具有氧化还原活性配体的配合物的前体。在吡咯烷上使用了不同的取代基,两个 CF3(L(2))、两个(t)Bu(L(0))和一个每种类型(L(1)),得到的 Ni(L(n))2 配合物对 CO、H2O、四氢呋喃(THF)或 MeCN 的路易斯酸度不同,L(2)情况的酸度最高。密度泛函理论计算表明,三种 Ni(L(n))2 物种的前线轨道都定域在两个配体的吡咯烷基团上,并且可以通过质谱和循环伏安法(CV)检测到 Ni(L(n))2(+)。在进行了主要表现出氧化活性的循环伏安研究之后,报道了与吡啶 N-氧化物或 Br2 的反应。前者生成简单的双加合物 Ni(L(2))2(pyNO)2,后者则使两个螯合物的一个吡咯烷环上的氢发生亲电芳香取代,使其溴化。