Literature DB >> 22424099

Highly selective asymmetric Rh-catalyzed hydroformylation of heterocyclic olefins.

Samir H Chikkali1, Rosalba Bellini, Bas de Bruin, Jarl Ivar van der Vlugt, Joost N H Reek.   

Abstract

A small family of new chiral hybrid, diphosphorus ligands, consisting of phosphine-phosphoramidites L1 and L2 and phosphine-phosphonites L3a-c, was synthesized for the application in Rh-catalyzed asymmetric hydroformylation of heterocyclic olefins. High-pressure (HP)-NMR and HP-IR spectroscopy under 5-10 bar of syngas has been employed to characterize the corresponding catalyst resting state with each ligand. Indole-based ligands L1 and L2 led to selective ea coordination, while the xanthene derived system L3c gave predominant ee coordination. Application of the small bite-angle ligands L1 and L2 in the highly selective asymmetric hydroformylation (AHF) of the challenging substrate 2,3-dihydrofuran (1) yielded the 2-carbaldehyde (3) as the major regioisomer in up to 68% yield (with ligand L2) along with good ee's of up to 62%. This is the first example in which the asymmetric hydroformylation of 1 is both regio- and enantioselective for isomer 3. Interestingly, use of ligand L3c in the same reaction completely changed the regioselectivity to 3-carbaldehyde (4) with a remarkably high enantioselectivity of 91%. Ligand L3c also performs very well in the Rh-catalyzed asymmetric hydroformylation of other heterocyclic olefins. Highly enantioselective conversion of the notoriously difficult substrate 2,5-dihydrofuran (2) is achieved using the same catalyst, with up to 91% ee, concomitant with complete regioselectivity to the 3-carbaldehyde product (4) under mild reaction conditions. Interestingly, the Rh-catalyst derived from L3c is thus able to produce both enantiomers of 3-carbaldehyde 4, simply by changing the substrate from 1 to 2. Furthermore, 85% ee was obtained in the hydroformylation of N-acetyl-3-pyrroline (5) with exceptionally high regioselectivities for 3-carbaldehyde 8Ac (>99%). Similarly, an ee of 86% for derivative 8Boc was accomplished using the same catalyst system in the AHF of N-(tert-butoxycarbonyl)-3-pyrroline (6). These results represent the highest ee's reported to date in the AHF of dihydrofurans (1, 2) and 3-pyrrolines (5, 6).
© 2012 American Chemical Society

Entities:  

Year:  2012        PMID: 22424099     DOI: 10.1021/ja210117z

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  4 in total

1.  Enhancing the stability of the Rh/ZnO catalyst by the growth of ZIF-8 for the hydroformylation of higher olefins.

Authors:  Lele Chen; Jinghao Tian; Huaxing Song; Zhaohua Gao; Haisheng Wei; Wenhua Wang; Wanzhong Ren
Journal:  RSC Adv       Date:  2020-09-16       Impact factor: 4.036

2.  Rapid Asymmetric Transfer Hydroformylation (ATHF) of Disubstituted Alkenes Using Paraformaldehyde as a Syngas Surrogate.

Authors:  José A Fuentes; Rachael Pittaway; Matthew L Clarke
Journal:  Chemistry       Date:  2015-06-25       Impact factor: 5.236

3.  Silicon-oriented regio- and enantioselective rhodium-catalyzed hydroformylation.

Authors:  Cai You; Xiuxiu Li; Yuhong Yang; Yu-Sheng Yang; Xuefeng Tan; Shuailong Li; Biao Wei; Hui Lv; Lung-Wa Chung; Xumu Zhang
Journal:  Nat Commun       Date:  2018-05-23       Impact factor: 14.919

4.  Synthesis and Characterization of Rh/B⁻TNTs as a Recyclable Catalyst for Hydroformylation of Olefin Containing ⁻CN Functional Group.

Authors:  Penghe Su; Xiaotong Liu; Ya Chen; Hongchi Liu; Baolin Zhu; Shoumin Zhang; Weiping Huang
Journal:  Nanomaterials (Basel)       Date:  2018-09-25       Impact factor: 5.076

  4 in total

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