Microporous poly(tri(4-ethynylphenyl)amine) networks were synthesized by palladium-catalyzed Sonogashira-Hagihara cross-coupling chemistry with apparent Brunauer-Emmet-Teller (BET) specific surface areas in the range 500-1100 m(2)/g. It was found that very fine synthetic control over physical properties such as BET surface area, Langmuir surface area, micropore surface area, micropore volume, and bulk density could be achieved by varying the average monomer strut length. The micropore structure and micropore surface area were rationalized by atomistic simulations for one network, NCMP-0, based on multiple physical characterization data
Poly(aryleneethynylene) networks prepared from tetrahedral monomers are highly microporous and exhib...
High surface area organic materials featuring both micro- and mesopores were synthesized under ionot...
High surface area organic materials featuring both micro- and mesopores were synthesized under ionot...
Microporous poly(tri(4-ethynylphenyl)amine) networks were synthesized by palladium-catalyzed Sonogas...
A series of rigid microporous poly(aryleneethynylene) (PAE) networks was synthesized by Sonogashira-...
The choice of reaction solvent has a major influence on the surface area and pore volume in conjugat...
The choice of reaction solvent has a major influence on the surface area and pore volume in conjugat...
High surface area porous poly(phenylene butadiynylene) networks were obtained (BET surface area up t...
A range of conjugated microporous polymer networks has been prepared using Sonogashira-Hagihara cros...
A series of tetrahedrally linked conjugated microporous polymer networks were prepared using a varie...
Rigid wiry nets: Conjugated microporous polymer networks are formed by Sonogashira-Hagihara coupling...
A series of following Schiff base type monomers with two terminal ethynyl groups and one or two azom...
Rigid wiry nets: Conjugated microporous polymer networks are formed by Sonogashira–Hagihara coupling...
Microporous organic polymers (MOPs) have been prepared via one-pot polycondensation reactions betwee...
A series of novel, microporous polymer networks (MPNs) have been generated in a simple, acid catalys...
Poly(aryleneethynylene) networks prepared from tetrahedral monomers are highly microporous and exhib...
High surface area organic materials featuring both micro- and mesopores were synthesized under ionot...
High surface area organic materials featuring both micro- and mesopores were synthesized under ionot...
Microporous poly(tri(4-ethynylphenyl)amine) networks were synthesized by palladium-catalyzed Sonogas...
A series of rigid microporous poly(aryleneethynylene) (PAE) networks was synthesized by Sonogashira-...
The choice of reaction solvent has a major influence on the surface area and pore volume in conjugat...
The choice of reaction solvent has a major influence on the surface area and pore volume in conjugat...
High surface area porous poly(phenylene butadiynylene) networks were obtained (BET surface area up t...
A range of conjugated microporous polymer networks has been prepared using Sonogashira-Hagihara cros...
A series of tetrahedrally linked conjugated microporous polymer networks were prepared using a varie...
Rigid wiry nets: Conjugated microporous polymer networks are formed by Sonogashira-Hagihara coupling...
A series of following Schiff base type monomers with two terminal ethynyl groups and one or two azom...
Rigid wiry nets: Conjugated microporous polymer networks are formed by Sonogashira–Hagihara coupling...
Microporous organic polymers (MOPs) have been prepared via one-pot polycondensation reactions betwee...
A series of novel, microporous polymer networks (MPNs) have been generated in a simple, acid catalys...
Poly(aryleneethynylene) networks prepared from tetrahedral monomers are highly microporous and exhib...
High surface area organic materials featuring both micro- and mesopores were synthesized under ionot...
High surface area organic materials featuring both micro- and mesopores were synthesized under ionot...