© The Royal Society of Chemistry. Novel porous organic polymers (POPs) have been synthesized using functionalized Cr and Co-salen complexes as molecular building blocks. The integration of metalosalen catalysts into the porous polymer backbone permits the successful utilization of the resultant functionalized material as a solid-state catalyst for CO2-epoxide cycloaddition reactions with excellent catalytic performance under mild conditions of temperature and pressure. The catalysts proved to be fully recyclable and robust, thus showing the potential of POPs as smart functional materials for the heterogenization of key catalytic elements
A single-component multifunctional catalyst (denoted as Mg-por/pho@POP) based on a magnesium porphyr...
Using the abundant, nontoxic and inexpensive CO2 as a renewable C1 feedstock, the catalytic coupling...
Converting CO2 into high value-added chemicals is a promising approach for CO2 utilization. It is im...
The transformation of carbon dioxide (CO2) into fuels and chemicals is an interesting topic, which h...
A series of Mg-porphyrin complex doped divinylbenzene (DVB) based porous organic polymers (POPs) wer...
The chemical fixation of CO2 into high value-added chemicals is of significant potential and sustain...
Abstract A novel triphenylphosphine-based porous polymer (TPDB) with a high Brunauer–Emmett–Teller (...
A series of quaternary phosphonium salt and ZnX2-PPh3 integrated hierarchical porous organic polymer...
Carbon dioxide (CO2) is the main greenhouse gas, whereas it is also a nontoxic, abundant, cheap carb...
A series of copolymers comprising a terpyridine ligand and various functional groups were synthesize...
The chemical fixation of CO2 into high value-added cyclic carbonates is of significant potential and...
Given current environmental concerns over greenhouse emissions, the need for technologies capable of...
The alternating copolymerization of CO2/epoxides is a useful means to incorporate high levels of car...
Efficient catalysis is essential from a green chemistry perspective. Porous organic polymers (POPs) ...
Generating promising materials for the conversion of CO2 to valuable industrial products under mild ...
A single-component multifunctional catalyst (denoted as Mg-por/pho@POP) based on a magnesium porphyr...
Using the abundant, nontoxic and inexpensive CO2 as a renewable C1 feedstock, the catalytic coupling...
Converting CO2 into high value-added chemicals is a promising approach for CO2 utilization. It is im...
The transformation of carbon dioxide (CO2) into fuels and chemicals is an interesting topic, which h...
A series of Mg-porphyrin complex doped divinylbenzene (DVB) based porous organic polymers (POPs) wer...
The chemical fixation of CO2 into high value-added chemicals is of significant potential and sustain...
Abstract A novel triphenylphosphine-based porous polymer (TPDB) with a high Brunauer–Emmett–Teller (...
A series of quaternary phosphonium salt and ZnX2-PPh3 integrated hierarchical porous organic polymer...
Carbon dioxide (CO2) is the main greenhouse gas, whereas it is also a nontoxic, abundant, cheap carb...
A series of copolymers comprising a terpyridine ligand and various functional groups were synthesize...
The chemical fixation of CO2 into high value-added cyclic carbonates is of significant potential and...
Given current environmental concerns over greenhouse emissions, the need for technologies capable of...
The alternating copolymerization of CO2/epoxides is a useful means to incorporate high levels of car...
Efficient catalysis is essential from a green chemistry perspective. Porous organic polymers (POPs) ...
Generating promising materials for the conversion of CO2 to valuable industrial products under mild ...
A single-component multifunctional catalyst (denoted as Mg-por/pho@POP) based on a magnesium porphyr...
Using the abundant, nontoxic and inexpensive CO2 as a renewable C1 feedstock, the catalytic coupling...
Converting CO2 into high value-added chemicals is a promising approach for CO2 utilization. It is im...