Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Catalytic Enantioselective Dihalogenation of Alkenes

View through CrossRef
AbstractVicinal dihalides not only emerge as reactive intermediates in synthetic organic chemistry, but also are extensively existing in bioactive marine natural products. The dihalogenation of alkenes is the most direct and effective method for the synthesis of vicinal dihalides. Because there is always an exchange process between the chiral haloniums and the unreacted olefins to cause racemization, the development of catalytic enantioselective dihalogenation of alkenes is of great difficulty. Recently, great progress has been made in catalytic asymmetric manner. However, there is a lack of related review of discussions of the mechanisms and reaction systems. This review is aimed at summarizing enantioselective dihalogenation of alkenes, including 1,2-dichlorination, 1,2-dibromination, and 1,2-difluorination, which is expected to encourage more researchers to participate in this field.1 Introduction2 Enantioselective 1,2-Dichlorination and 1,2-Dibromination of Alkenes2.1 Chiral-Boron-Complex-Promoted Enantioselective 1,2-Dichlorination2.2 Organocatalytic Asymmetric 1,2-Dichlorination and 1,2-Dibromination2.3 Chiral-Titanium-Complex-Catalyzed 1,2-Dihalogenation3 Chiral-Iodide-Catalyzed Enantioselective Oxidative 1,2-Difluorination4 Summary and Outlook
Title: Catalytic Enantioselective Dihalogenation of Alkenes
Description:
AbstractVicinal dihalides not only emerge as reactive intermediates in synthetic organic chemistry, but also are extensively existing in bioactive marine natural products.
The dihalogenation of alkenes is the most direct and effective method for the synthesis of vicinal dihalides.
Because there is always an exchange process between the chiral haloniums and the unreacted olefins to cause racemization, the development of catalytic enantioselective dihalogenation of alkenes is of great difficulty.
Recently, great progress has been made in catalytic asymmetric manner.
However, there is a lack of related review of discussions of the mechanisms and reaction systems.
This review is aimed at summarizing enantioselective dihalogenation of alkenes, including 1,2-dichlorination, 1,2-dibromination, and 1,2-difluorination, which is expected to encourage more researchers to participate in this field.
1 Introduction2 Enantioselective 1,2-Dichlorination and 1,2-Dibromination of Alkenes2.
1 Chiral-Boron-Complex-Promoted Enantioselective 1,2-Dichlorination2.
2 Organocatalytic Asymmetric 1,2-Dichlorination and 1,2-Dibromination2.
3 Chiral-Titanium-Complex-Catalyzed 1,2-Dihalogenation3 Chiral-Iodide-Catalyzed Enantioselective Oxidative 1,2-Difluorination4 Summary and Outlook.

Related Results

Recent Advances in Photoinduced Oxidative Cleavage of Alkenes
Recent Advances in Photoinduced Oxidative Cleavage of Alkenes
AbstractOxidative cleavage of alkenes leading to valuable carbonyl derivatives is a fundamental transformation in synthetic chemistry. In particular, ozonolysis is the mainstream m...
Oxidation of the C—H bond
Oxidation of the C—H bond
Abstract The development of methodology for asymmetric functionalization of the C—H bond offers a challenge in the strive for acquiring optically active building-blo...
Katalis Plat Kuningan Berbentuk Sarang Lebah untuk Mengurangi Emisi Kendaraan Bermotor
Katalis Plat Kuningan Berbentuk Sarang Lebah untuk Mengurangi Emisi Kendaraan Bermotor
Meningkatnya jumlah kendaraan bermotor berdampak langsung terhadap pencemaran udara akibat gas buang. Pencemaran udara di perkotaan didominasi oleh emisi kendaraan bermotor, disert...
Inhalation Kinetics of C8 to C10 1‐Alkenes and Iso‐Alkanes in the Rat after Repeated Exposures
Inhalation Kinetics of C8 to C10 1‐Alkenes and Iso‐Alkanes in the Rat after Repeated Exposures
The toxicokinetic properties of C8 and C10 1‐alkenes and iso‐alkanes have been investigated in rats during inhalation of 100 p.p.m. of the single hydrocarbons for 3 days, 12 hr/day...
Arrays of Stereogenic Centers: The Carbery Synthesis of Mycestericin G
Arrays of Stereogenic Centers: The Carbery Synthesis of Mycestericin G
Chi-Ming Che of the University of Hong Kong devised (Chem. Commun. 2011, 47, 11204) a manganese catalyst for the enantioselective cis-dihydroxylation of electron-deficient alkenes ...
Merging Photoexcited Nitroarenes with Lewis Acid Catalysis for the Anaerobic Oxidation of Alkenes
Merging Photoexcited Nitroarenes with Lewis Acid Catalysis for the Anaerobic Oxidation of Alkenes
A protocol for the oxidation of alkenes to carbonyls and acetonides via the interplay of photoexcited nitroarenes and Lewis acid catalysis is described. Terminal 1,1-disubstitued a...
Conjugate Alkynylation of Electrophilic Double Bonds. From Regioselectivity to Enantioselectivity
Conjugate Alkynylation of Electrophilic Double Bonds. From Regioselectivity to Enantioselectivity
This review surveys the historical efforts addressed toward the development of the conjugate alkynylation reaction. The regio- and enantioselective conjugate alkynylation of electr...
The Hydroformylation Reaction
The Hydroformylation Reaction
AbstractThe reaction of 1‐alkenes with carbon monoxide and hydrogen in the presence of a catalyst gives the corresponding homologous aldehydes. The discovery of this reaction was m...

Back to Top