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1.
ChemSusChem ; 10(6): 1152-1159, 2017 03 22.
Article in English | MEDLINE | ID: mdl-27860348

ABSTRACT

Carbocation/polyol systems are shown to be highly efficient catalysts for the synthesis of cyclic carbonates from epoxides and carbon dioxide at 50 °C and 5 MPa CO2 pressure. The best activity was shown by the combination of crystal violet and 1,1'-bi-2-naphthol (BINOL), which could be recycled five times with no loss of activity. The presence of specific interactions between the amino groups of the carbocation and the hydroxyl protons was confirmed by NMR experiments. The Job plots for the crystal violet iodide/BINOL and brilliant green iodide/BINOL systems showed that the catalytic systems consist of one molecule of the carbocation and one molecule of BINOL. Mechanistic studies using a deuterated epoxide indicate that there was some loss of epoxide stereochemistry during the reaction, but predominant retention of stereochemistry is observed. On this basis, a catalytic cycle is proposed.


Subject(s)
Carbonates/chemistry , Polymers/chemistry , Carbonates/chemical synthesis , Catalysis , Chemistry Techniques, Synthetic , Stereoisomerism , Styrene
2.
ChemSusChem ; 9(2): 216-22, 2016 Jan.
Article in English | MEDLINE | ID: mdl-26663897

ABSTRACT

Stereochemically inert cationic cobalt(III) complexes were shown to be one-component catalysts for the synthesis of cyclic carbonates from epoxides and carbon dioxide at 50 °C and 5 MPa carbon dioxide pressure. The optimal catalyst possessed an iodide counter anion and could be recycled. A catalytic cycle is proposed in which the ligand of the cobalt complexes acts as a hydrogen-bond donor, activating the epoxide towards ring opening by the halide anion and activating the carbon dioxide for subsequent reaction with the halo-alkoxide. No kinetic resolution was observed when terminal epoxides were used as substrates, but chalcone oxide underwent kinetic resolution.


Subject(s)
Carbonates/chemistry , Carbonates/chemical synthesis , Cobalt/chemistry , Lewis Bases/chemistry , Organometallic Compounds/chemistry , Catalysis , Chemistry Techniques, Synthetic , Stereoisomerism
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