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Iron complexes of chiral phenol-oxazoline ligands: Structural studies and oxidation catalysis

机译:手性酚 - 恶唑啉配体的铁配合物:结构研究和氧化催化

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摘要

Iron complexes of two ligands, HphoxCOOH and HphoxiPr, have been synthesized and characterized by crystal structure analyses. The complexes (HNEt3)2[Fe(phoxCOO)2](ClO4) and [Fe(phoxiPr)3] are reported. Reactions of the ligands rac-HphoxCOOH and rac- HphoxiPr with iron(II) or iron(III) perchlorate result in the formation of iron(III) complexes with pseudo-octahedral geometry around the metal center. The iron complex obtained from rac-HphoxCOOH crystallized in the centrosymmetric space group Cmca. The two ligands are bound in a tridentate manner generating a meridional coordination with both dianionic ligands on a metal center having the same chirality; due to the center of symmetry the complex with opposite chirality is also present. The complex (HNEt3)2[Fe(phox- COO)2](ClO4) is the first accurate structural model of the iron complex of a siderophore analog commonly observed in mycobactins. The three didentate ligands in the complex [Fe(phoxiPr)3] are bound with like atoms in a meridional manner to the metal center. The metal ion is surrounded by two ligands of the same chirality and one ligand of opposite chirality (ie. RRS or SSR); due to the presence of a center of symmetry both isomers are present in the crystal structure. The complex (HNEt3)2[Fe(phoxCOO)2](ClO4) shows promising activity in the oxidation of alkanes, such as toluene, ethylbenzene and cumene, while the complex [Fe(phoxiPr)3] does not show any catalytic activity in alkane oxidations under the conditions tested. The complex (HNEt3)2[Fe(phoxCOO)2](ClO4) is reasonably efficient in the conversion of H2O2 to oxidation products.
机译:已经合成了两个配体HphoxCOOH和HphoxiPr的铁配合物,并通过晶体结构分析对其进行了表征。报道了络合物(HNEt 3)2 [Fe(phoxCOO)2](ClO 4)和[Fe(phoxiPr)3]。配体rac-HphoxCOOH和rac-HphoxiPr与铁(II)或高氯酸铁(III)的反应导致在金属中心周围形成具有伪八面体几何形状的铁(III)配合物。从rac-HphoxCOOH获得的铁络合物在中心对称空间群Cmca中结晶。这两个配体以三齿方式结合,与具有相同手性的金属中心上的两个双阴离子配体产生子午配位。由于对称中心,也存在具有相反手性的配合物。络合物(HNEt3)2 [Fe(phox-COO)2](ClO4)是在霉菌素中常见的铁载体类似物的铁络合物的第一个精确结构模型。配合物[Fe(phoxiPr)3]中的三个二齿配体以子午的方式与类似的原子键合到金属中心。金属离子被两个手性相同的配体和一个手性相反的配体(即RRS或SSR)包围;由于存在对称中心,所以两种异构体都存在于晶体结构中。配合物(HNEt3)2 [Fe(phoxCOO)2](ClO4)在氧化甲苯,乙苯和枯烯等烷烃方面显示出令人鼓舞的活性,而配合物[Fe(phoxiPr)3]则没有任何催化活性。烷烃在测试条件下的氧化。络合物(HNEt3)2 [Fe(phoxCOO)2](ClO4)在将H2O2转化为氧化产物方面相当有效。

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