Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto Acids with Oxo-Tethered Ruthenium Catalysts

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Last updated 23 mai 2024
Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic  Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto  Acids with Oxo-Tethered Ruthenium Catalysts
Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic  Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto  Acids with Oxo-Tethered Ruthenium Catalysts
Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto Acids with Oxo-Tethered Ruthenium Catalysts
Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic  Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto  Acids with Oxo-Tethered Ruthenium Catalysts
Structural Diversity in Ruthenium-Catalyzed Asymmetric Transfer Hydrogenation Reactions
Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic  Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto  Acids with Oxo-Tethered Ruthenium Catalysts
Asymmetric transfer hydrogenation of fluorinated ketone and imine derivatives: An efficient access to valuable building blocks - ScienceDirect
Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic  Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto  Acids with Oxo-Tethered Ruthenium Catalysts
Frontiers Ketoreductase Catalyzed (Dynamic) Kinetic Resolution for Biomanufacturing of Chiral Chemicals
Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic  Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto  Acids with Oxo-Tethered Ruthenium Catalysts
Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto Acids with Oxo-Tethered Ruthenium Catalysts
Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic  Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto  Acids with Oxo-Tethered Ruthenium Catalysts
Asymmetric transfer hydrogenation : chiral ligands and applications - Chemical Society Reviews (RSC Publishing) DOI:10.1039/B513396C
Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic  Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto  Acids with Oxo-Tethered Ruthenium Catalysts
Recent developments in transition metal-catalyzed asymmetric borrowing hydrogen catalysis - ScienceDirect
Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic  Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto  Acids with Oxo-Tethered Ruthenium Catalysts
Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto Acids with Oxo-Tethered Ruthenium Catalysts
Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic  Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto  Acids with Oxo-Tethered Ruthenium Catalysts
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Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic  Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto  Acids with Oxo-Tethered Ruthenium Catalysts
Frontiers Ketoreductase Catalyzed (Dynamic) Kinetic Resolution for Biomanufacturing of Chiral Chemicals
Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic  Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto  Acids with Oxo-Tethered Ruthenium Catalysts
Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto Acids with Oxo-Tethered Ruthenium Catalysts
Multiple Absolute Stereocontrol in Cascade Lactone Formation via Dynamic  Kinetic Resolution Driven by the Asymmetric Transfer Hydrogenation of Keto  Acids with Oxo-Tethered Ruthenium Catalysts
η6‐Arene CH−O Interaction Directed Dynamic Kinetic Resolution – Asymmetric Transfer Hydrogenation (DKR‐ATH) of α‐Keto/enol‐Lactams - Luo - 2021 - Advanced Synthesis & Catalysis - Wiley Online Library

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