The hydrogen bond donor-promoted fixation of CO2 and epoxides into cyclic carbonates was investigated through experimental and density functional theory studies. A highly effective homogeneous system of 1,2-benzenediol-tetrabutyl ammonium bromide (TBAB) and heterogeneous poly-ionic liquids were developed for the fixation of CO2 into cyclic carbonates via hydrogen bond activation, based on the understanding of the reaction mechanism and catalyst design. The work hence provides a molecular level understanding of the reaction process and forms the basis for the rational design of catalytic systems for the fixation of CO2 into useful organic compounds.</p
Due to concerns about global warming combined with the decrease of fossil resources, the chemical tr...
A family of novel multi-center ionic liquids (ILs) were designed for the target of efficient transfo...
The mechanism of coupling reaction of CO2 with propylene oxide (PO) catalyzed by the aminofunctional...
A synergistic effect of the hydrogen bond on the cycloaddition of CO2 and epoxides to form cyclic ca...
Regarding the economic and environmental issues, valorising CO2 as a C1 feedstock for producing usef...
The present research aims at developing new very efficient organocatalysts for the chemical fixation...
Utilization of CO2 (carbon dioxide) to synthesize useful organic compounds has attracted much atte...
Chemical fixation of CO(2)is an efficient means for decreasing amount of CO(2)in the atmosphere. One...
The development of bifunctional ionic polymers as heterogeneous catalysts for effective, cocatalyst-...
The coupling of carbon dioxide (CO2) with epoxides with the formation of cyclic carbonates is a high...
The fixation of carbon dioxide with epoxide catalysed by a series of carboxylic acidic functionalise...
The CO2 fixation into epoxide to produce cyclic carbonate is a promising route to realize the large-...
The cycloaddition of CO2 with epoxides catalyzed by ionic liquids (ILs) has been a widely ongoing st...
The reaction between carbon dioxide and epoxides is an attractive pathway for CO2-utilisation as it ...
Valorising CO2 as a C1 feedstock for producing added value building blocks is seducing as it is a fr...
Due to concerns about global warming combined with the decrease of fossil resources, the chemical tr...
A family of novel multi-center ionic liquids (ILs) were designed for the target of efficient transfo...
The mechanism of coupling reaction of CO2 with propylene oxide (PO) catalyzed by the aminofunctional...
A synergistic effect of the hydrogen bond on the cycloaddition of CO2 and epoxides to form cyclic ca...
Regarding the economic and environmental issues, valorising CO2 as a C1 feedstock for producing usef...
The present research aims at developing new very efficient organocatalysts for the chemical fixation...
Utilization of CO2 (carbon dioxide) to synthesize useful organic compounds has attracted much atte...
Chemical fixation of CO(2)is an efficient means for decreasing amount of CO(2)in the atmosphere. One...
The development of bifunctional ionic polymers as heterogeneous catalysts for effective, cocatalyst-...
The coupling of carbon dioxide (CO2) with epoxides with the formation of cyclic carbonates is a high...
The fixation of carbon dioxide with epoxide catalysed by a series of carboxylic acidic functionalise...
The CO2 fixation into epoxide to produce cyclic carbonate is a promising route to realize the large-...
The cycloaddition of CO2 with epoxides catalyzed by ionic liquids (ILs) has been a widely ongoing st...
The reaction between carbon dioxide and epoxides is an attractive pathway for CO2-utilisation as it ...
Valorising CO2 as a C1 feedstock for producing added value building blocks is seducing as it is a fr...
Due to concerns about global warming combined with the decrease of fossil resources, the chemical tr...
A family of novel multi-center ionic liquids (ILs) were designed for the target of efficient transfo...
The mechanism of coupling reaction of CO2 with propylene oxide (PO) catalyzed by the aminofunctional...