首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Synthesis and Characterization of Iron(II) Complexes with Tetradentate Diiminodiphosphine or Diaminodiphosphine Ligands as precatalysts for the Hydrogenation of Acetophenone
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Synthesis and Characterization of Iron(II) Complexes with Tetradentate Diiminodiphosphine or Diaminodiphosphine Ligands as precatalysts for the Hydrogenation of Acetophenone

机译:四齿二亚氨基二膦或二氨基二膦配体作为苯乙酮加氢的预催化剂铁(II)配合物的合成与表征

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Six complexes of the type trans-[Fe(NCMe)(2)(P-N-N-P)]X-2 (X = BF4-, B{Ar-f}(4)(-)) (Ar-f = 3,5-(CF3)(2)C6H3) containing diiminodiphosphine ligands and the complexes trans-[Fe(NCMe)(2)(P-NH-NH-P)][BF4](2) with a diaminodiphosphine ligand were obtained by the reaction of Fe(II) salts with achiral and chiral P-N-N-P or P-NH-NH-P ligands, respectively, in acetonitrile at ambient temperature. The P-N-N-P ligands are derived from reaction of orthodiphenylphosphinobenzaldehyde with the diamines 1,2-ethylenediamine,1,3-propylenediamine, (S,S)-1,2-disopropyl-1,2-diaminoethane, and (RR)-1,2-diphenyl-1,2-diaminoethane. Some complexes could also be obtained for the first time in a one-pot template synthesis under mild reaction conditions. Single crystal X-ray diffraction studies of the complexes revealed a trans distorted octahedral structure around the iron. The iPr or Ph substituents on the diamine were found to be axial in the five-membered Fe-N-CHR-CHR-N- ring of the chiral P-N-N-P ligands. A steric clash between the imine hydrogen and the substituent probably determines this stereochemistry. The diaminodiphosphine complex has longer Fe-N and Fe-P bonds than the analogous diiminodiphosphine complex. The new iron compounds were used as precatalysts for the hydrogenation of acetophenone. The complexes without axial substituents on the diamine had moderate catalytic activity while that with axial Ph substituents had low activity but fair (61%) enantioselectivity for the asymmetric hydrogenation of acetophenone. The fact that the diaminodiphosphine complex has a slightly higher activity than the corresponding diiminodiphosphine complex suggests that hydrogenation of the imine groups in the P-N-N-P ligand may be important for catalyst activation. Evidence is provided, including the first density-functional theory calculations on iron-catalyzed outer-sphere ketone hydrogenation, that the mechanism is similar to that of ruthenium analogues.
机译:六种反式-[Fe(NCMe)(2)(PNNP)] X-2(X = BF4-,B {Ar-f}(4)(-))的络合物(Ar-f = 3,5-含有二亚氨基二膦配体的(CF3)(2)C6H3)和通过与二氨基二膦配体的反式[-Fe(NCMe)(2)(P-NH-NH-P)] [BF4](2)的配合物在环境温度下,分别在乙腈中具有非手性和手性PNNP或P-NH-NH-P配体的Fe(II)盐。 PNNP配体源自邻二苯基膦基苯甲醛与二胺1,2-乙二胺,1,3-丙二胺,(S,S)-1,2-二异丙基-1,2-二氨基乙烷和(RR)-1,2 -二苯基-1,2-二氨基乙烷。在温和的反应条件下,一锅模板合成中也可以首次获得某些配合物。配合物的单晶X射线衍射研究表明,铁周围呈反扭曲的八面体结构。发现二胺上的iPr或Ph取代基在手性P-N-N-P配体的五元Fe-N-CHR-CHR-N-环中是轴向的。亚胺氢和取代基之间的空间冲突可能决定了这种立体化学。与类似的二亚氨基二膦配合物相比,二氨基二膦配合物具有更长的Fe-N和Fe-P键。新的铁化合物用作苯乙酮加氢的预催化剂。在二胺上没有轴向取代基的配合物具有适度的催化活性,而带有轴向Ph取代基的配合物具有较低的活性,但是对苯乙酮的不对称氢化具有相当的(61%)对映选择性。二氨基二膦配合物具有比相应的二亚氨基二膦配合物稍高的活性的事实表明,P-N-N-P配体中亚胺基的氢化对于催化剂活化可能是重要的。提供的证据包括有关铁催化外球酮氢化的第一个密度泛函理论计算,其机理与钌类似物相似。

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