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Chirality at metal and helical ligand folding in optical isomers of chiral bis(naphthaldiminato)nickel(II) complexes

机译:手性双(萘二甲)镍(II)配合物的旋光异构体中金属和螺旋配体折叠的手性

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摘要

Enantiopure bis[(R or S)-N-1-(Ar)ethyl-2-oxo-1-naphthaldiminato-κ2N,O]nickel(ii) complexes Ar = C6H5 (1R or 1S), p-OMeC6H4 (2R or 2S), and p-BrC6H4 (3R or 3S) are synthesized from the reactions between (R or S)-N-1-(Ar)ethyl-2-oxo-1-naphthaldimine and nickel(ii) acetate. Circular-dichroism spectra and their density-functional theoretical simulation reveal the expected mirror image relationship between the enantiomeric pairs 1R/1S and 3R/3S in solution. CD spectra are dominated by the metal-centered Λ- or Δ-chirality of non-planar four-coordinated nickel, this latter being in turn dictated by the ligand chirality. Single crystal structure determination for 1R and 1S shows that there are two symmetry-independent molecules (A and B) in each asymmetric unit that give a Z′ = 2 structure. Two asymmetric and chiral bidentate N^O-chelate Schiff base ligands coordinate to the nickel atom in a distorted square planar N2O2-coordination sphere. The conformational difference between the symmetry-independent molecules arises from the "up-or-down" folding of the naphthaldiminato ligand with respect to the coordination plane, which creates right- (P) or left-handed (M) helical conformations. Overall, the combination of ligand chirality, chirality at the metal and ligand folding gives rise to discrete metal helicates of preferred helicity in a selective way. Cyclic voltammograms (CV) show an oxidation wave at ca. 1.30 V for the [Ni(L)2]/[Ni(L)2]+ couple, and a reduction wave at ca. -0.35 V for the [Ni(L)2]/[Ni(L)2]- couple in acetonitrile.
机译:对映体双[(R或S)-N-1-(Ar)乙基-2-氧-1-萘二甲氨基-κ2N,O]镍(ii)配合物Ar = C6H5(1R或1S),p-OMeC6H4(2R或由(R或S)-N-1-(Ar)乙基-2-氧代-1-萘二胺和乙酸镍(ii)之间的反应合成对-BrC6H4(3S或3S)。圆二色性光谱及其密度泛函理论模拟揭示了溶液中对映体对1R / 1S和3R / 3S之间的预期镜像关系。 CD光谱主要由非平面四配位镍的金属中心Λ或Δ手性决定,后者又由配体的手性决定。对1R和1S的单晶结构测定表明,每个不对称单元中都有两个不对称的分子(A和B),它们的Z'= 2结构。两个不对称和手性的二齿N 2 O-螯合物席夫碱配体与扭曲的方形平面N 2 O 2配位球中的镍原子配位。不对称的分子之间的构象差异是由萘二甲胺配体相对于配位平面的“上或下”折叠引起的,这会产生右旋(P)或左旋(M)螺旋构象。总的来说,配体手性,在金属上的手性和配体折叠的组合以选择性的方式产生了具有优选螺旋性的离散金属螺旋。循环伏安图(CV)显示约1的氧化波。 [Ni(L)2] / [Ni(L)2] +耦合为1.30 V,并在ca产生一个还原波。对于乙腈中的[Ni(L)2] / [Ni(L)2]-对,为-0.35V。

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