Organic conjugated polymer dots (Pdots) are emerging as a potential photocatalyst for hydrogen evolution from water. In this work, three organic semiconducting polymer dots (Pdots) based on benzo[d][1,2,3]thiadiazole (isoBT) and surfactant-based poly(ethylene oxide) chains (Triton) are presented as photocatalysts for visible-light-driven hydrogen generation in a completely solvent-free organic system. The resulting Pdots exhibit good photocatalytic activity and excellent photocatalytic stability. Achieving high efficiency with long-term photostability is important for the future commercialization of large-scale hydrogen production. Moreover, PG6 Pdots with a 1-chloro-4-fluorobenzene moiety showed high photocatalytic efficiency with high pho...
Artificial photosynthesis aiming to capture and convert renewable solar energy into solar fuels (e.g...
A semiartificial photosynthesis approach that utilizes enzymes for solar fuel production relies on e...
Linear poly(p-phenylene)s are modestly active UV photocatalysts for hydrogen production in the prese...
Organic polymers based on the donor-acceptor structure are a promising class of efficient photocatal...
Organic semiconducting polymers exhibited promising photocatalytic behavior for hydrogen (H2) evolut...
In this work, we report a highly efficient organic polymer nano-photocatalyst for light driven proto...
Organic semiconducting polymers dots (Pdots) have recently shown efficient photocatalytic activity f...
By mimicking natural photosynthesis, generating hydrogen through visible-light-driven splitting of w...
Photocatalytic hydrogen production has recently emerged as a promising process for the long-term sto...
Water splitting using polymer photocatalysts is a key technology to a truly sustainable hydrogen-bas...
11noPhotocatalytic hydrogen production has recently emerged as a promising process for the long-term...
Three conjugated polymers consisting of truxene donor units and different acceptor units are synthes...
A set of fluorene-based polymers with a donor–acceptor architecture has been investigated as a poten...
Water splitting using polymer photocatalysts is a key technology to a truly sustainable hydrogen-bas...
Development and understanding of catalytic reactions involved in fuel formation are crucial to be ab...
Artificial photosynthesis aiming to capture and convert renewable solar energy into solar fuels (e.g...
A semiartificial photosynthesis approach that utilizes enzymes for solar fuel production relies on e...
Linear poly(p-phenylene)s are modestly active UV photocatalysts for hydrogen production in the prese...
Organic polymers based on the donor-acceptor structure are a promising class of efficient photocatal...
Organic semiconducting polymers exhibited promising photocatalytic behavior for hydrogen (H2) evolut...
In this work, we report a highly efficient organic polymer nano-photocatalyst for light driven proto...
Organic semiconducting polymers dots (Pdots) have recently shown efficient photocatalytic activity f...
By mimicking natural photosynthesis, generating hydrogen through visible-light-driven splitting of w...
Photocatalytic hydrogen production has recently emerged as a promising process for the long-term sto...
Water splitting using polymer photocatalysts is a key technology to a truly sustainable hydrogen-bas...
11noPhotocatalytic hydrogen production has recently emerged as a promising process for the long-term...
Three conjugated polymers consisting of truxene donor units and different acceptor units are synthes...
A set of fluorene-based polymers with a donor–acceptor architecture has been investigated as a poten...
Water splitting using polymer photocatalysts is a key technology to a truly sustainable hydrogen-bas...
Development and understanding of catalytic reactions involved in fuel formation are crucial to be ab...
Artificial photosynthesis aiming to capture and convert renewable solar energy into solar fuels (e.g...
A semiartificial photosynthesis approach that utilizes enzymes for solar fuel production relies on e...
Linear poly(p-phenylene)s are modestly active UV photocatalysts for hydrogen production in the prese...