Many of the highest-performing polymer photocatalysts for sacrificial hydrogen evolution from water have contained dibenzo[b,d]thiophene sulfone units in their polymer backbones. However, the reasons behind the dominance of this building block are not well understood. We study films, dispersions, and solutions of a new set of solution-processable materials, where the sulfone content is systematically controlled, to understand how the sulfone unit affects the three key processes involved in photocatalytic hydrogen generation in this system: light absorption; transfer of the photogenerated hole to the hole scavenger triethylamine (TEA); and transfer of the photogenerated electron to the palladium metal co-catalyst that remains in the polymer ...
We perform a high-throughput virtual screening of a set of 3240 conjugated alternating binary co-pol...
The hydrogen evolution activity of a polymeric photocatalyst was maximised by co-polymerisation, usi...
Water splitting using polymer photocatalysts is a key technology to a truly sustainable hydrogen-bas...
Many of the highest-performing polymer photocatalysts for sacrificial hydrogen evolution from water ...
Conjugated polymers have sparked much interest as photocatalysts for hydrogen production. However, b...
Polymer photocatalysts have received growing attention in recent years for photocatalytic hydrogen p...
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 ...
Three series of conjugated microporous polymers (CMPs) were studied as photocatalysts for hydrogen p...
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...
Linear poly(p-phenylene)s are modestly active UV photocatalysts for hydrogen production in the prese...
Polymer photocatalysts have shown potential for light-driven hydrogen evolution from water. Here we ...
Structure–property–activity relationships in solution processable polymer photocatalysts for hydroge...
The photocatalytic performance of fluorene-type polymer photocatalysts for hydrogen production from ...
We perform a high-throughput virtual screening of a set of 3240 conjugated alternating binary co-pol...
The hydrogen evolution activity of a polymeric photocatalyst was maximised by co-polymerisation, usi...
Water splitting using polymer photocatalysts is a key technology to a truly sustainable hydrogen-bas...
Many of the highest-performing polymer photocatalysts for sacrificial hydrogen evolution from water ...
Conjugated polymers have sparked much interest as photocatalysts for hydrogen production. However, b...
Polymer photocatalysts have received growing attention in recent years for photocatalytic hydrogen p...
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 ...
Three series of conjugated microporous polymers (CMPs) were studied as photocatalysts for hydrogen p...
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...
Linear poly(p-phenylene)s are modestly active UV photocatalysts for hydrogen production in the prese...
Polymer photocatalysts have shown potential for light-driven hydrogen evolution from water. Here we ...
Structure–property–activity relationships in solution processable polymer photocatalysts for hydroge...
The photocatalytic performance of fluorene-type polymer photocatalysts for hydrogen production from ...
We perform a high-throughput virtual screening of a set of 3240 conjugated alternating binary co-pol...
The hydrogen evolution activity of a polymeric photocatalyst was maximised by co-polymerisation, usi...
Water splitting using polymer photocatalysts is a key technology to a truly sustainable hydrogen-bas...