A new, high surface area, nanoporous polymer (COP-220) was synthesized using sustainable building blocks, namely, a food coloring dye (erythrosine B) and a commercial alkyne. During the Sonogashira coupling, it is observed that Pd and Cu ions and triphenylphosphine ligands of the catalyst get trapped inside the pores. The remnant synthesis catalyst components were characterized in detail and were tested as a new catalyst for Suzuki–Miyaura coupling reactions. COP-220 showed conversion yields comparable to the commercial homogeneous catalyst Pd(PPh3)2Cl2 with an additional advantage of size-dependent catalytic activity when bulkier substrates were used. COP-220 was highly stable under thermal and chemical treatments and recyclable with no l...
Efficient catalysis is essential from a green chemistry perspective. Porous organic polymers (POPs) ...
The development and advantages of in situ synthesis of organic polymer monolith supports for metal p...
Two click-based porous organic polymers (CPP-1 and CPP-2) are readily synthesized through a click re...
A new set of microporous organic polymers (POPs) containing diphosphine derivatives synthesized by k...
A new generation of confined palladium(II) catalysts covalently attached inside of porous organic po...
It is highly desirable to design functionalized supports in heterogeneous catalysis regarding the st...
Porous organic polymers (POPs) are of growing research interest owing to their high surface areas, s...
Porous polymerized organocatalysts (PPOs) have been successfully synthesized from the corresponding ...
A quaternary phosphonium and tertiary phosphorus functionalized microporous polymer was obtained via...
Stable, catalytically active palladium nanoparticles of various average diameters (1.9–7.4 nm) have ...
Ultrasmall metal nanoparticles (MNPs) were decorated on soluble porous coordination polymers (PCPs) ...
Porous organic polymers (POPs) are highly versatile materials that find applications in adsorption, ...
International audienceHybrid materials consisting of metallic nanoparticles (NPs) adsorbed on porous...
Dialkyl malonates are important organic intermediates that are widely used as building blocks in org...
Miniaturisation of reactions to the sub-millilitre scale, through the use of microreactor technolog...
Efficient catalysis is essential from a green chemistry perspective. Porous organic polymers (POPs) ...
The development and advantages of in situ synthesis of organic polymer monolith supports for metal p...
Two click-based porous organic polymers (CPP-1 and CPP-2) are readily synthesized through a click re...
A new set of microporous organic polymers (POPs) containing diphosphine derivatives synthesized by k...
A new generation of confined palladium(II) catalysts covalently attached inside of porous organic po...
It is highly desirable to design functionalized supports in heterogeneous catalysis regarding the st...
Porous organic polymers (POPs) are of growing research interest owing to their high surface areas, s...
Porous polymerized organocatalysts (PPOs) have been successfully synthesized from the corresponding ...
A quaternary phosphonium and tertiary phosphorus functionalized microporous polymer was obtained via...
Stable, catalytically active palladium nanoparticles of various average diameters (1.9–7.4 nm) have ...
Ultrasmall metal nanoparticles (MNPs) were decorated on soluble porous coordination polymers (PCPs) ...
Porous organic polymers (POPs) are highly versatile materials that find applications in adsorption, ...
International audienceHybrid materials consisting of metallic nanoparticles (NPs) adsorbed on porous...
Dialkyl malonates are important organic intermediates that are widely used as building blocks in org...
Miniaturisation of reactions to the sub-millilitre scale, through the use of microreactor technolog...
Efficient catalysis is essential from a green chemistry perspective. Porous organic polymers (POPs) ...
The development and advantages of in situ synthesis of organic polymer monolith supports for metal p...
Two click-based porous organic polymers (CPP-1 and CPP-2) are readily synthesized through a click re...