Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Catalytic formation of a regio- and enantioselective C-F bond chiral center from readily available alkenes is a crucial goal, yet it continues to pose significant challenges in organic synthesis. Here, we report the regioselective formation of C-F bonds facilitated by NiH catalysis and a coordination directing strategy that enables precise hydrofluorination of both terminal and internal alkenes. Notably, we have optimized this methodology to achieve high enantioselectivity in creating aliphatic C-F stereogenic centers especially with β,γ-alkenyl substrates, using a tailored chiral Bn-BOx ligand. Another pivotal finding in our research is the identification of the (+)-nonlinear effect under optimized conditions, allowing for high enantioselectivity even with moderately enantiomerically enriched chiral ligands. Given the significant role of fluorine in pharmaceuticals and synthetic materials, this research offers essential insights into the regioselective and enantioselective formation of C-F bond chiral centers, paving the way for the efficient production of valuable fluorinated compounds.

Download full-text PDF

Source
http://dx.doi.org/10.1021/jacs.4c01548DOI Listing

Publication Analysis

Top Keywords

c-f bond
12
regio- enantioselective
8
enantioselective c-f
8
bond chiral
8
formation c-f
8
high enantioselectivity
8
c-f
5
nickel-catalyzed hydrofluorination
4
hydrofluorination unactivated
4
unactivated alkenes
4

Similar Publications

The strong C-F bond found in per- and poly-fluorinated alkyl substances (PFAS) makes them resistant to degradation and thus persistent in the environment. One of the most common methods for quantifying PFAS in environmental matrices is to use tandem mass spectrometry. However, the dissociation of ions made by deprotonating PFAS alcohols and acids has only been qualitatively explored.

View Article and Find Full Text PDF

3-Fluoropyrroles are privileged scaffolds in pharmaceutical and agrochemical applications, yet their synthesis remains challenging. Herein, we report a palladium(0)-catalyzed [4+1] cycloaddition/dehydration strategy for the efficient construction of 3-fluoropyrroles from readily available 3,3-difluoropent-4-en-2-ones and primary amines. This transformation proceeds via C-F bond activation to generate a key π-allyl-Pd(II) intermediate, followed by intramolecular addition/dehydration to furnish the heterocyclic core.

View Article and Find Full Text PDF

Methylene blue (MB) remains one of the most resilient contaminants in industrial wastewater which presents serious threats to both environmental integrity and human health. Its high chemical stability and resistance to natural degradation render most conventional treatment methods ineffective. As such, this study aimed to develop a multifunctional nanocomposite membrane that mitigates membrane fouling, enhances dye separation, and improves water permeability.

View Article and Find Full Text PDF

Despite increasing demand for chiral fluorinated organic molecules, enantioselective C-H fluorination remains among the most challenging and sought-after transformations in organic synthesis. Furthermore, utilizing nucleophilic sources of fluorine is especially desirable for F-radiolabelling. To date, methods for enantioselective nucleophilic fluorination of inert C(sp)-H bonds remain unknown.

View Article and Find Full Text PDF

A diastereoselective Pd-catalyzed allylic C-F bond functionalization of pentafluoroethyl alkenes is described. Heteroatom nucleophiles including amines, alcohols, and thiols can be employed to construct new C-N, C-O, or C-S bonds with concomitant cleavage of an allylic C-F bond. Both 1,1- and 1,2-disubstituted pentafluoroalkenes can be utilized to synthesize novel tetra- and trisubstituted alkenes containing an sp-carbon connected to both F and CF in good to excellent diastereoselectivities.

View Article and Find Full Text PDF