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US Patent 10179330 Chiral N-substituted allylic amine compounds

Patent 10179330 was granted and assigned to University of Louisiana at Lafayette on January, 2019 by the United States Patent and Trademark Office.

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Patent
Patent

Patent attributes

Patent Applicant
University of Louisiana at Lafayette
University of Louisiana at Lafayette
Current Assignee
University of Louisiana at Lafayette
University of Louisiana at Lafayette
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10179330
Date of Patent
January 15, 2019
Patent Application Number
15469654
Date Filed
March 27, 2017
Patent Citations Received
‌
US Patent 12129268 Chiral N-substituted allylic amine compounds
0
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US Patent 11021494 Chiral N-substituted allylic amine compounds
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US Patent 11912647 Diversity-oriented synthesis of N,N,O-trisubstituted hydroxylamines from alcohols and amines by N—O bond formation
0
Patent Primary Examiner
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Clinton A Brooks
Patent abstract

The method relates to the field of asymmetric allylic amination and comprises preparing a chiral N-substituted allylic amine compound from the corresponding allylic substrates and substituted hydroxylamines, in the presence of a catalyst, said catalyst comprising copper compounds and a chiral ligand. Examples of chiral amine compounds which can be made using the method include Vigabatrin, Ezetimibe Terbinafine, Naftifine 3-methylmorphine, Sertraline, Cinacalcet, Mefloquine hydrochloride, and Rivastigmine. There are over 20,000 known bioactive molecules with chiral N-substituted allylic amine substructure. The method may also be used to produce non-natural chiral β-aminoacid esters, a sub-class of chiral N-substituted allylic amine compounds. Examples of β-aminoacid ester which can be produced by the disclosed method, include, but are not limited to, N-(2-methylpent-1-en-3-yl)benzenamine and Ethyl 2-methylene-3-(phenylamino)butanoate. Further, the products of the method described herein can be used to produce chiral heterocycles and bioactive molecules or materials. A novel chiral copper-ligand nitrosoarene complex is also set forth.

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