Structure-Activity Relationships in the Domain of Odorants Having Marine Notes
作者:Jean-Marc Gaudin、Jean-Yves de Saint Laumer
DOI:10.1002/ejoc.201403365
日期:2015.3
Continuing our investigations into marinenoteodorants, we herein describe several new scaffolds. Among them, 2,3-dihydrobenzofuran-2-carbaldehyde is particularly interesting. The results demonstrate that the seven-membered ring with a ketone functional group of the Calone 1951® family can be replaced by a five-membered ring carrying an aldehyde function. In addition, this work has allowed us to discover
SMALL MOLECULE INHIBITORS OF SPLEEN TYROSINE KINASE (SYK)
申请人:Rigel Pharmaceuticals, Inc.
公开号:EP2443123B1
公开(公告)日:2017-04-05
A MILD CATALYTIC REDUCTION OF C-O BONDS AND C=O BONDS USING A RECYCLABLE CATALYST SYSTEM
申请人:ORGANOFUEL SWEDEN AB
公开号:US20170334819A1
公开(公告)日:2017-11-23
A method of reducing a C—O bond to the corresponding C—H bond in a substrate, which could be a benzylic alcohol, allylic alcohol, ester or an ether bond beta to a hydroxyl group or alpha to a carbonyl group using a recyclable metal catalyst system. The recyclable catalyst system is also applicable to reducing a C═O bond to the corresponding C—OH bond and then C—H bond. These methodologies can be linked in one-pot to selective oxidation and depolymerizations of aromatic polyols such as lignin.
[EN] A MILD CATALYTIC REDUCTION OF C-O BONDS AND C=O BONDS USING A RECYCLABLE CATALYST SYSTEM<br/>[FR] RÉDUCTION CATALYTIQUE MODÉRÉE DE LIAISONS C-O ET LIAISONS C=O À L'AIDE D'UN SYSTÈME CATALYSEUR RECYCLABLE
申请人:CÓRDOVA ARMANDO
公开号:WO2016066835A1
公开(公告)日:2016-05-06
The present invention relates to a mild method of reducing a C-O bond to the corresponding C-H bond in a substrate, which could be a benzylic alcohol, allylic alcohol, ester or an ether bond beta to a hydroxyl group or alpha to a carbonyl group using a recyclable metal catalyst system. The recyclable catalyst system is also applicable to reducing a C=O bond to the corresponding C-OH bond and then C-H bond. These methodologies can be linked in one-pot to selective oxidation and depolymerizations of aromatic polyols such as lignin, which is an important part of the invention.