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The power of electron paramagnetic resonance to study asymmetric homogeneous catalysts based on transition-metal complexes

机译:电子顺磁共振用于研究基于过渡金属配合物的不对称均相催化剂的能力

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Asymmetric synthesis involves the preparation of chiral compounds with well-defined three-dimensional molecular structure or stereochemistry. Many of these enantioselective transformations involve chiral ligands incorporating transition-metal ions. Over the years numerous synthetic, spectroscopic and theoretical approaches have been applied to understand and probe the inner workings and mode of chiral transfer in these homogeneous based catalysts. For the paramagnetic based asymmetric complexes, electron paramagnetic resonance (EPR) can provide a wealth of detail and information on the structure and mechanism of the catalysts. Despite this potential, the application and uptake of advanced EPR methodologies to this field of endeavor has been limited. The purpose of this review is to explain and illustrate, through representative examples, the enormous amount of information that can be obtained from an EPR study of the chiral metal-based complexes, ranging from electronic structure and symmetry to spatial arrangement of interacting ligands and substrates.
机译:不对称合成涉及具有明确的三维分子结构或立体化学的手性化合物的制备。这些对映选择性转化中许多都涉及掺有过渡金属离子的手性配体。多年来,许多合成,光谱和理论方法已被用于理解和探究这些均相基催化剂中手性转移的内部工作方式。对于基于顺磁性的不对称络合物,电子顺磁共振(EPR)可以提供大量有关催化剂的结构和机理的详细信息。尽管有这种潜力,但在这一领域中,先进的EPR方法学的应用和采用受到限制。这篇综述的目的是通过代表性的例子来解释和说明,从对手性金属基络合物的EPR研究中可以获得的大量信息,涉及电子结构和对称性以及相互作用的配体和底物的空间排列。

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