This article reports on the selective oxidation of unactivated alkenes to ketones and epoxides through the intermediacy of beta-hydroxyalkyl rhodium porphyrin complexes which are formed by reactions of terminal alkenes with tetra(p-sulfonatophenyl)porphyrin rhodium(III) complex. The beta-hydroxyalkyl rhodium porphyrin complexes in water undergo beta-C-H elimination to produce ketones in aqueous pH 9.0 solutions and O-H deprotonation in KOH/DMSO solutions resulting in the rapid and quantitative intramolecular nucleophilic displacement to form 1,2-epoxyalkanes.Chemistry, Inorganic & NuclearSCI(E)EIPubMed11ARTICLE2477-4833
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
This article reports on kinetic studies for three alternate pathways, including beta-hydrogen elimin...
http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAM...
Selective oxidation of alkenes inwater to ketones using molecular oxygen as the oxidant is mediated ...
Current interest in converting organometallic processes from organic to aqueous media motivated this...
beta-Hydroxylethyl rhodium porphyrins underwent selective carbon-carbon bond activation with ether a...
Selective oxidation of alcohol in water using molecular oxygen as the terminal oxidant is mediated b...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
This article reports on kinetic studies for three alternate pathways, including beta-hydrogen elimin...
http://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcApp=PARTNER_APP&SrcAuth=LinksAM...
Selective oxidation of alkenes inwater to ketones using molecular oxygen as the oxidant is mediated ...
Current interest in converting organometallic processes from organic to aqueous media motivated this...
beta-Hydroxylethyl rhodium porphyrins underwent selective carbon-carbon bond activation with ether a...
Selective oxidation of alcohol in water using molecular oxygen as the terminal oxidant is mediated b...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...
Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of keton...