365426-92-2Relevant academic research and scientific papers
Salicylic acids as readily available starting materials for the synthesis of meta-substituted biaryls
Luo, Junfei,Preciado, Sara,Larrosa, Igor
, p. 3127 - 3130 (2015/04/14)
Salicylic acids are shown to be readily available and versatile starting materials that easily undergo a tandem arylation-protodecarboxylation process under Pd-catalysis. The corresponding meta-arylphenols can subsequently be easily transformed into a variety of meta-functionalized biaryls, highlighting the versatility of this approach to access this structural motif.
Salicylic acids as readily available starting materials for the synthesis of meta-substituted biaryls
Luo, Junfei,Preciado, Sara,Larrosa, Igor
supporting information, p. 3127 - 3130 (2015/06/03)
Salicylic acids are shown to be readily available and versatile starting materials that easily undergo a tandem arylation-protodecarboxylation process under Pd-catalysis. The corresponding meta-arylphenols can subsequently be easily transformed into a var
Overriding ortho-para selectivity via a traceless directing group relay strategy: The meta-selective arylation of phenols
Luo, Junfei,Preciado, Sara,Larrosa, Igor
supporting information, p. 4109 - 4112 (2014/04/03)
The direct functionalization of phenols at the ortho and para position is generally facilitated by the electron-donating nature of the hydroxyl group. Accessing meta-functionalized phenols from the parent phenols, on the other hand, generally requires lengthy synthetic sequences. Here, we report the first methodology for the one-pot direct meta-selective arylation of phenols. This methodology is based on a traceless directing group relay strategy. In this process carbon dioxide is used as a transient directing group which facilitates a palladium catalyzed arylation meta to the phenol hydroxyl group with iodoarenes. This transformation proceeds with complete meta-selectivity and is compatible with a variety of functional groups both in the phenol and in the iodoarene coupling partner.
Aerobic oxidative heck/dehydrogenation reactions of cyclohexenones: Efficient access to meta-substituted phenols
Izawa, Yusuke,Zheng, Changwu,Stahl, Shannon S.
supporting information, p. 3672 - 3675 (2013/04/23)
Jockeying for the (meta)position: A new dicationic palladium(II) catalyst, employing a 6,6′-dimethyl-2,2′-bipyridine ligand, promotes both the aerobic oxidative Heck coupling and dehydrogenation reactions of cyclohexenones. These reactions may be combined in a one-pot sequence to enable the straightforward synthesis of meta-substituted phenols (see scheme). Copyright
8-Azabicyclo[3.2.1]octane derivatives
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Page/Page column 9, (2008/06/13)
The present invention relates to a 8-azabicyclo[3.2.1]octane derivative of Formula I, wherein each of the substituents is given the definition as set forth in the specification and claims, or a pharmaceutically acceptable salt thereof or solvate thereof. The present invention also relates to a pharmaceutical composition comprising an 8-azabicyclo[3.2.1]octane derivative in admixture with one or more pharmaceutically acceptable auxiliaries and to the use of the 8-azabicyclo[3.2.1]octane derivative in therapy.
Cyclohexylcarbamic acid 3′- or 4′-substituted biphenyl-3-yl esters as fatty acid amide hydrolase inhibitors: Synthesis, quantitative structure-activity relationships, and molecular modeling studies
Mor, Marco,Rivara, Silvia,Lodola, Alessio,Plazzi, Pier Vincenzo,Tarzia, Giorgio,Duranti, Andrea,Tontini, Andrea,Piersanti, Giovanni,Kathuria, Satish,Piomelli, Daniele
, p. 4998 - 5008 (2007/10/03)
Fatty acid amide hydrolase (FAAH) is a promising target for modulating endocannabinoid and fatty acid ethanolamide signaling, which may have important therapeutic potential. We recently described a new class of O-arylcarbamate inhibitors of FAAH, includin
Aryl and heteroaryl sulfonates
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Page 12, (2008/06/13)
The invention relates to novel aryl and heteroaryl sulfonates of formula (Ia) and to methods for producing them and to novel aryl and heteroaryl sulfonates of formula (I) for treating and/or preventing diseases, especially for treating pain and neurodegen
