Polymer photocatalysts have shown potential for light-driven hydrogen evolution from water. Here we studied the relative importance of the linker type in two series of conjugated polymers based on dibenzo[b,d]thiophene sulfone and dimethyl-9H-fluorene. The alkenyl-linked polymers were found to be more active photocatalysts than their alkyl and alkyne-linked counterparts. The co-polymer of dibenzo[b,d]thiophene sulfone and 1,2-diphenylethene has a hydrogen evolution rate of 3334 μmol g−1 h−1 and an external quantum efficiency of 5.6% at 420 nm
The hydrogen evolution activity of a polymeric photocatalyst was maximised by co-polymerisation, usi...
Conjugated ladder polymers (cLaPs) are introduced as organic semiconductors for photocatalytic hydro...
Polymer photocatalysts have received growing attention in recent years for photocatalytic hydrogen p...
Polymer photocatalysts have shown potential as for light-driven hydrogen evolution from water. Here ...
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...
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...
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 ...
Hydrogen gas will likely play an important role in the decarbonisation of hard-to-abate sectors and ...
Structure–property–activity relationships in solution processable polymer photocatalysts for hydroge...
Many of the highest-performing polymer photocatalysts for sacrificial hydrogen evolution from water ...
The hydrogen evolution activity of a polymeric photocatalyst was maximised by co-polymerisation, usi...
Conjugated ladder polymers (cLaPs) are introduced as organic semiconductors for photocatalytic hydro...
Polymer photocatalysts have received growing attention in recent years for photocatalytic hydrogen p...
Polymer photocatalysts have shown potential as for light-driven hydrogen evolution from water. Here ...
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...
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...
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 ...
Hydrogen gas will likely play an important role in the decarbonisation of hard-to-abate sectors and ...
Structure–property–activity relationships in solution processable polymer photocatalysts for hydroge...
Many of the highest-performing polymer photocatalysts for sacrificial hydrogen evolution from water ...
The hydrogen evolution activity of a polymeric photocatalyst was maximised by co-polymerisation, usi...
Conjugated ladder polymers (cLaPs) are introduced as organic semiconductors for photocatalytic hydro...
Polymer photocatalysts have received growing attention in recent years for photocatalytic hydrogen p...