The chemical fixation of CO2 into high value-added chemicals is of significant potential and sustainability to address the energy and ecological issues. To achieve great catalytic performance on the transformation of CO2, it is pivotal to strategically integrating several multifunctional and synergetic functionalities into the catalyst design and catalytic system construction. Herein, the poly(ionic liquid)-hierarchical porous covalent organic framework (PIL-HPCOF) hybrids were successfully synthesized via the formation of HPCOF through hard template method, followed by in-situ polymerization of mono-vinyl decorated ionic liquids (ILs). The resultant PIL-HPCOF hybrids possess excellent versatility, with micropores providing high surface are...
Cocatalyst-free ionic liquid (IL)-based porous polymers (P-x-V-y-OHzR) functionalized with an interm...
CO2, an acidic gas, is usually emitted from the combustion of fossil fuels and leads to the formatio...
1-(2-Hydroxyl-ethyl)-imidazolium-based ionic liquids (HEIMX, X = Cl, Br, I), which have both acidic ...
The chemical fixation of CO2 into high value-added chemicals is of significant potential and sustain...
Converting CO2 into high value-added chemicals is a promising approach for CO2 utilization. It is im...
The chemical fixation of CO2 into high value-added cyclic carbonates is of significant potential and...
The cycloaddition of carbon dioxide (CO2) with epoxides to yield highly value-added cyclic carbonate...
Carbon dioxide (CO2) is an important C1 resource, and the preparation of cyclocarbonate by catalyzin...
The production of carbonates from carbon dioxide (CO2) and epoxides is an atom-economical reaction. ...
To realize a high utilization ratio and easy recyclability of catalysts, polymeric ionic liquids as ...
The development of bifunctional ionic polymers as heterogeneous catalysts for effective, cocatalyst-...
A series of hydroxyl-functionalized poly(ionic liquids) (PILs) were synthesized and employed as cata...
A series of porous poly(ionic liquid)s (PILs) were synthesized using an innovative method which invo...
The effective conversion of carbon dioxide (CO2) into cyclic carbonates requires porous materials wi...
Core-shell polyionic liquids were successfully constructed to reduce the amount of bulk ionic liquid...
Cocatalyst-free ionic liquid (IL)-based porous polymers (P-x-V-y-OHzR) functionalized with an interm...
CO2, an acidic gas, is usually emitted from the combustion of fossil fuels and leads to the formatio...
1-(2-Hydroxyl-ethyl)-imidazolium-based ionic liquids (HEIMX, X = Cl, Br, I), which have both acidic ...
The chemical fixation of CO2 into high value-added chemicals is of significant potential and sustain...
Converting CO2 into high value-added chemicals is a promising approach for CO2 utilization. It is im...
The chemical fixation of CO2 into high value-added cyclic carbonates is of significant potential and...
The cycloaddition of carbon dioxide (CO2) with epoxides to yield highly value-added cyclic carbonate...
Carbon dioxide (CO2) is an important C1 resource, and the preparation of cyclocarbonate by catalyzin...
The production of carbonates from carbon dioxide (CO2) and epoxides is an atom-economical reaction. ...
To realize a high utilization ratio and easy recyclability of catalysts, polymeric ionic liquids as ...
The development of bifunctional ionic polymers as heterogeneous catalysts for effective, cocatalyst-...
A series of hydroxyl-functionalized poly(ionic liquids) (PILs) were synthesized and employed as cata...
A series of porous poly(ionic liquid)s (PILs) were synthesized using an innovative method which invo...
The effective conversion of carbon dioxide (CO2) into cyclic carbonates requires porous materials wi...
Core-shell polyionic liquids were successfully constructed to reduce the amount of bulk ionic liquid...
Cocatalyst-free ionic liquid (IL)-based porous polymers (P-x-V-y-OHzR) functionalized with an interm...
CO2, an acidic gas, is usually emitted from the combustion of fossil fuels and leads to the formatio...
1-(2-Hydroxyl-ethyl)-imidazolium-based ionic liquids (HEIMX, X = Cl, Br, I), which have both acidic ...