Linear poly(p-phenylene)s are modestly active UV photocatalysts for hydrogen production in the presence of a sacrificial electron donor. Introduction of planarized fluorene, carbazole, dibenzo[b,d]thiophene or dibenzo[b,d]thiophene sulfone units greatly enhances the H2 evolution rate. The most active dibenzo[b,d]thiophene sulfone co-polymer has a UV photocatalytic activity that rivals TiO2, but is much more active under visible light. The dibenzo[b,d]thiophene sulfone co-polymer has an apparent quantum yield of 2.3 % at 420 nm, as compared to 0.1 % for platinized commercial pristine carbon nitride
Polymeric photocatalysts have been identified as promising materials for H2 production from water du...
Conjugated porous polymers (CPPs) are highly promising hydrogen production (PHP) photocatalysts. The...
Here, we present the use of mini-emulsion polymerization to generate small particle analogues of thr...
Linear poly(p‐phenylene)s are modestly active UV photocatalysts for hydrogen production in the prese...
Linear poly(p-phenylene)s are modestly active UV photocatalysts for hydrogen production in the prese...
Polymer photocatalysts have shown potential as for light-driven hydrogen evolution from water. Here ...
Polymer photocatalysts have shown potential for light-driven hydrogen evolution from water. Here we ...
Three series of conjugated microporous polymers (CMPs) were studied as photocatalysts for hydrogen p...
Conjugated organic polymers have shown potential as photocatalysts for hydrogen production by water ...
Three series of conjugated microporous polymers (CMPs) were studied as photocatalysts for hydrogen p...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...
The hydrogen evolution activity of a polymeric photocatalyst was maximised by co-polymerisation, usi...
Conjugated polymers have sparked much interest as photocatalysts for hydrogen production. However, b...
The photocatalytic performance of fluorene-type polymer photocatalysts for hydrogen production from ...
Many of the highest-performing polymer photocatalysts for sacrificial hydrogen evolution from water ...
Polymeric photocatalysts have been identified as promising materials for H2 production from water du...
Conjugated porous polymers (CPPs) are highly promising hydrogen production (PHP) photocatalysts. The...
Here, we present the use of mini-emulsion polymerization to generate small particle analogues of thr...
Linear poly(p‐phenylene)s are modestly active UV photocatalysts for hydrogen production in the prese...
Linear poly(p-phenylene)s are modestly active UV photocatalysts for hydrogen production in the prese...
Polymer photocatalysts have shown potential as for light-driven hydrogen evolution from water. Here ...
Polymer photocatalysts have shown potential for light-driven hydrogen evolution from water. Here we ...
Three series of conjugated microporous polymers (CMPs) were studied as photocatalysts for hydrogen p...
Conjugated organic polymers have shown potential as photocatalysts for hydrogen production by water ...
Three series of conjugated microporous polymers (CMPs) were studied as photocatalysts for hydrogen p...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...
The hydrogen evolution activity of a polymeric photocatalyst was maximised by co-polymerisation, usi...
Conjugated polymers have sparked much interest as photocatalysts for hydrogen production. However, b...
The photocatalytic performance of fluorene-type polymer photocatalysts for hydrogen production from ...
Many of the highest-performing polymer photocatalysts for sacrificial hydrogen evolution from water ...
Polymeric photocatalysts have been identified as promising materials for H2 production from water du...
Conjugated porous polymers (CPPs) are highly promising hydrogen production (PHP) photocatalysts. The...
Here, we present the use of mini-emulsion polymerization to generate small particle analogues of thr...