Herein, an efficient synthetic strategy for synthesis of bio-based polycarbonate has been developed by using tetramethylammonium-based amino acid ionic liquids (AAILs) as catalysts for the melt polymerization of isosorbide (ISB) and dimethyl carbonate (DMC). These AAILs exhibited outstanding catalytic activity towards DMC, enabling the selectivity of carboxymethyl intermediates greater than 99 %. By modifying the anionic structure of AAIL catalysts, the conversion of ISB and the molecular weight of PIC could be remarkably improved. Tetramethylammonium arginine ([N1111][Arg]) showed the highest catalytic activity due to its multiple active sites and high basicity. Combining experimental results and DFT calculations, a plausible reaction mech...
As a kind of bio-based platform chemicals derived from renewable resource glucose, isosorbide (ISB) ...
To realize a high utilization ratio and easy recyclability of catalysts, polymeric ionic liquids as ...
In this study, an efficient catalytic system composed of deep eutectic solvents (DESs) was developed...
Herein, an efficient synthetic strategy for synthesis of bio-based polycarbonate has been developed ...
It is an immense challenge to design catalysts for synthesizing high molecular weight polycarbonates...
The synthesis of high-molecular-weight bioderived polycarbonates via green routes and regulation of ...
Using biomass and renewable feedstocks to prepare high value-added products instead of conventional ...
The utilization of renewable resources and carbon dioxide (CO2) has attracted extensive attention du...
The conversion of biomass and carbon dioxide to plastics is one of the key solutions to reduce the g...
Green synthesis of high-molecular-weight isosorbide-based polycarbonate (PIC) with excellent propert...
Synthesis of bioderived high-molecular-weight polycarbonates over metal-free catalysts is of great i...
A series of quaternary aMmonium ionic liquids(ILs) were synthesized and employed as catalysts for th...
In this study, a series of high-activity imidazole- based dicationic ionic liquids (DILs) were desig...
The synthesis of dimethyl carbonate (DMC) via transesterification of ethylene carbonate (EC) and met...
We investigated the dependence of cations and anions of ionic liquids (ILs) on catalytic activity fo...
As a kind of bio-based platform chemicals derived from renewable resource glucose, isosorbide (ISB) ...
To realize a high utilization ratio and easy recyclability of catalysts, polymeric ionic liquids as ...
In this study, an efficient catalytic system composed of deep eutectic solvents (DESs) was developed...
Herein, an efficient synthetic strategy for synthesis of bio-based polycarbonate has been developed ...
It is an immense challenge to design catalysts for synthesizing high molecular weight polycarbonates...
The synthesis of high-molecular-weight bioderived polycarbonates via green routes and regulation of ...
Using biomass and renewable feedstocks to prepare high value-added products instead of conventional ...
The utilization of renewable resources and carbon dioxide (CO2) has attracted extensive attention du...
The conversion of biomass and carbon dioxide to plastics is one of the key solutions to reduce the g...
Green synthesis of high-molecular-weight isosorbide-based polycarbonate (PIC) with excellent propert...
Synthesis of bioderived high-molecular-weight polycarbonates over metal-free catalysts is of great i...
A series of quaternary aMmonium ionic liquids(ILs) were synthesized and employed as catalysts for th...
In this study, a series of high-activity imidazole- based dicationic ionic liquids (DILs) were desig...
The synthesis of dimethyl carbonate (DMC) via transesterification of ethylene carbonate (EC) and met...
We investigated the dependence of cations and anions of ionic liquids (ILs) on catalytic activity fo...
As a kind of bio-based platform chemicals derived from renewable resource glucose, isosorbide (ISB) ...
To realize a high utilization ratio and easy recyclability of catalysts, polymeric ionic liquids as ...
In this study, an efficient catalytic system composed of deep eutectic solvents (DESs) was developed...