Boron containing chiral Schiff bases: Synthesis and catalytic activity in asymmetric transfer hydrogenation (ATH) of ketones

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Abstract

Asymmetric Transfer Hydrogenation (ATH) has been an attractive way for the reduction of ketones to chiral alcohols. A great number of novel and valuable synthetic pathways have been achived by the combination usage of organometallic and coordination chemistry for the production of important class of compounds and particularly optically active molecules. For this aim, four boron containing Schiff bases were synthesized by the reaction of 4-formylphenylboronic acid with chiral amines. The boron containing structures have been found as stable compounds due to the presence of covalent BeO bonds and thus could be handled in laboratory environment. They were characterized by 1 H NMR and FT-IR spectroscopy and elemental analysis and they were used as catalyst in the transfer hydrogenation of ketones to the related alcohol derivatives with high conversions (up to 99%) and low enantioselectivities (up to 22% ee).

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Homogeneous catalysis, Boron compound, Chiral Schiff base, Asymmetric transfer hydrogenation, Aromatic ketone

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JOURNAL OF MOLECULAR STRUCTURE

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1200

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PAŞA, S., ARSLAN, N., MERİÇ, N., KAYAN, C., BİNGÜL, M., DURAP, F., & AYDEMİR, M. (2020). Boron containing chiral Schiff bases Synthesis and catalytic activity in asymmetric transfer hydrogenation ATH of ketones. JOURNAL OF MOLECULAR STRUCTURE, 1200, 127064–0.

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