Rhodium(III) porphyrins were found to undergo selective C(CO)–C(α) bond activation (CCA) of ketones promoted by water at temperatures as low as 50 °C. The acyl group of the ketone was transferred to the rhodium center, and the alkyl fragment was oxidized to a carbonyl moiety accordingly. The hydroxyl group of water is transferred to the rhodium porphyrin through hydrolysis of the kinetic α-carbon–hydrogen bond activation (α-CHA) product to give Rh<sup>III</sup>(ttp)OH (ttp = 5,10,15,20-tetratolylporphyrinato dianion), which subsequently cleaves the C(CO)–C(α) bond of ketone
This article reports on the selective oxidation of unactivated alkenes to ketones and epoxides throu...
K<sub>2</sub>CO<sub>3</sub>-promoted carbon–hydrogen and carbon–carbon bond activations of cyclohept...
Selective oxidation of alkenes inwater to ketones using molecular oxygen as the oxidant is mediated ...
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) porphyrin β-hydroxyethyl, Rh<sup>III</sup>(ttp)CH<sub>2</sub>CH<sub>2</sub>OH (ttp = ...
Photocatalytic carbon–carbon σ-bond oxidation of unstrained ketones by water using rhodium(III) por...
Base-promoted aryl carbon–iodine and carbon–bromine bond (Ar–X, X = I, Br) cleavage by rhodium porph...
Rhodium-carbon bond cleavage represents an essential step for small molecule activation and transfor...
This article reports on the selective oxidation of unactivated alkenes to ketones and epoxides throu...
K<sub>2</sub>CO<sub>3</sub>-promoted carbon–hydrogen and carbon–carbon bond activations of cyclohept...
Selective oxidation of alkenes inwater to ketones using molecular oxygen as the oxidant is mediated ...
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) porphyrin β-hydroxyethyl, Rh<sup>III</sup>(ttp)CH<sub>2</sub>CH<sub>2</sub>OH (ttp = ...
Photocatalytic carbon–carbon σ-bond oxidation of unstrained ketones by water using rhodium(III) por...
Base-promoted aryl carbon–iodine and carbon–bromine bond (Ar–X, X = I, Br) cleavage by rhodium porph...
Rhodium-carbon bond cleavage represents an essential step for small molecule activation and transfor...
This article reports on the selective oxidation of unactivated alkenes to ketones and epoxides throu...
K<sub>2</sub>CO<sub>3</sub>-promoted carbon–hydrogen and carbon–carbon bond activations of cyclohept...
Selective oxidation of alkenes inwater to ketones using molecular oxygen as the oxidant is mediated ...