Functionalized aromatic iodides possessing an ester, cyano, chloride or keto group can be converted to arylzinc iodides by reaction with zinc in DMF or DMAC. After transmetallation to the corresponding arylcopper, they react with several electrophiles such as enongs, allylic halides and benzoyl chloride to afford highly functionalized aromatic compounds. Extension to the preparation of polyfunctionalized heteroaromatic zinc iodides and to an alkenylzinc iodide was also successful, although the zinc insertion to a pure (E)-alkenyl iodide furnished an E/Z mixture of alkenyl zinc iodides.Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/28966/1/0000803.pd
We found that a catalytic amount of silver acetate efficiently promotes direct insertion of zinc met...
A wide range of polyfunctional diaryl-and diheteroarylzinc species were prepared in toluene within 1...
A wide range of polyfunctional aryl and heteroaryl zinc reagents were efficiently prepared in THF by...
The methods described herein deal with the problem of precluding protection/deprotection and functio...
.%umaty: Functionalized aromatic ioaYaks possessing an ester, qatw, chloride or keto group can be co...
A catalytic amount of silver acetate efficiently promotes direct insertion of zinc metal into aryl i...
Highly reactive zinc was prepared by the lithium naphthalenide reduction of zinc halides. This highl...
Aryl- and hetero-aryl iodides react under very mild conditions (THF, 25 °C) with a Zn(Ag) couple dep...
Organozinc and copper derivatives are useful reagents in organic synthesis. Because of the high func...
Highly reactive copper was prepared by the lithium naphthalide reductions of various copper(I) salt/...
The mixed copper, zinc benzylic organometallics 1a-1c react efficiently with various electrophiles. ...
Highly reactive zinc metal was prepared by electrolysis of a N, N-dimethylformamide (DMF) solution c...
2-Cyanoethylzinc iodide 1 generated in over 90% yield from 3-iodopropionitrile and zinc in THF can b...
Secondary and tertiary alkylzinc bromides can be generated from the direct oxidative addition of Rie...
Organozinc halides are useful reagents for organic synthesis, as witnessed by their wide use as nucl...
We found that a catalytic amount of silver acetate efficiently promotes direct insertion of zinc met...
A wide range of polyfunctional diaryl-and diheteroarylzinc species were prepared in toluene within 1...
A wide range of polyfunctional aryl and heteroaryl zinc reagents were efficiently prepared in THF by...
The methods described herein deal with the problem of precluding protection/deprotection and functio...
.%umaty: Functionalized aromatic ioaYaks possessing an ester, qatw, chloride or keto group can be co...
A catalytic amount of silver acetate efficiently promotes direct insertion of zinc metal into aryl i...
Highly reactive zinc was prepared by the lithium naphthalenide reduction of zinc halides. This highl...
Aryl- and hetero-aryl iodides react under very mild conditions (THF, 25 °C) with a Zn(Ag) couple dep...
Organozinc and copper derivatives are useful reagents in organic synthesis. Because of the high func...
Highly reactive copper was prepared by the lithium naphthalide reductions of various copper(I) salt/...
The mixed copper, zinc benzylic organometallics 1a-1c react efficiently with various electrophiles. ...
Highly reactive zinc metal was prepared by electrolysis of a N, N-dimethylformamide (DMF) solution c...
2-Cyanoethylzinc iodide 1 generated in over 90% yield from 3-iodopropionitrile and zinc in THF can b...
Secondary and tertiary alkylzinc bromides can be generated from the direct oxidative addition of Rie...
Organozinc halides are useful reagents for organic synthesis, as witnessed by their wide use as nucl...
We found that a catalytic amount of silver acetate efficiently promotes direct insertion of zinc met...
A wide range of polyfunctional diaryl-and diheteroarylzinc species were prepared in toluene within 1...
A wide range of polyfunctional aryl and heteroaryl zinc reagents were efficiently prepared in THF by...