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US Patent 6888032 Copper-catalyzed formation of carbon-heteroatom and carbon-carbon bonds

Patent 6888032 was granted and assigned to Massachusetts Institute of Technology on May, 2005 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
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Current Assignee
Massachusetts Institute of Technology
Massachusetts Institute of Technology
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
68880320
Patent Inventor Names
Jacopo Zanon0
Artis Klapars0
Eric R. Streiter0
Fuk Y. Kwong0
Stephen L. Buchwald0
Date of Patent
May 3, 2005
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Patent Application Number
106314800
Date Filed
July 31, 2003
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Patent Citations Received
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US Patent 12070459 Pharmaceutical capsule compositions comprising lumateperone mono-tosylate
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US Patent 11958852 Compounds and methods
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US Patent 11957791 Methods
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US Patent 11872223 Amorphous solid dispersions
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US Patent 12128043 Pharmaceutical capsules comprising lumateperone mono-tosylate
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US Patent 12023331 Methods
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Patent Primary Examiner
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Taofiq Solola
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Patent abstract

One aspect of the present invention relates to copper-catalyzed carbon-heteroatom and carbon-carbon bond-forming methods. In certain embodiments, the present invention relates to copper-catalyzed methods of forming a carbon-sulfur bond between the sulfur atom of a thiol moiety and the activated carbon of an aryl, heteroaryl, or vinyl halide or sulfonate. In other embodiments, the present invention relates to copper(II)-catalyzed methods of forming a carbon-nitrogen bond between the nitrogen atom of an amide and the activated carbon of an aryl, heteroaryl, or vinyl halide or sulfonate. In certain embodiments, the present invention relates to copper-catalyzed methods of forming a carbon-carbon bond between the carbon atom of cyanide ion and the activated carbon of an aryl, heteroaryl, or vinyl halide or sulfonate. In another embodiment, the present invention relates to a copper-catalyzed method of transforming an aryl, heteroaryl, or vinyl chloride or bromide into the corresponding aryl, heteroaryl, or vinyl iodide. Yet another embodient of the present invention relates to a tandem method, which may be practiced in a single reaction vessel, wherein the first step of the method involves the copper-catalyzed formation of an aryl, heteroaryl, or vinyl iodide from the corresponding aryl, heteroaryl, or vinyl chloride or bromide; and the second step of the method involves the copper-catalyzed formation of an aryl, heteroaryl, or vinyl nitrile, amide or sulfide from the aryl, heteroaryl, or vinyl iodide formed in the first step.

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