In this work, we report a highly efficient organic polymer nano-photocatalyst for light driven proton reduction. The system renders an initial rate of hydrogen evolution up to 50 +/- 0.5 mmol g(-1) h(-1), which is the fastest rate among all other reported organic photocatalysts. We also experimentally and theoretically prove that the nitrogen centre of the benzothiadiazole unit plays a crucial role in the photocatalysis and that the Pdots structure holds a close to ideal geometry to enhance the photocatalysis
Linear poly(p-phenylene)s are modestly active UV photocatalysts for hydrogen production in the prese...
Conjugated polymers have sparked much interest as photocatalysts for hydrogen production. However, b...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...
In this work, we report a highly efficient organic polymer nano-photocatalyst for light driven proto...
Photocatalysts formed from a single organic semiconductor typically suffer from inefficient intrinsi...
Development and understanding of catalytic reactions involved in fuel formation are crucial to be ab...
Organic semiconducting polymers exhibited promising photocatalytic behavior for hydrogen (H2) evolut...
A library of donor-acceptor system consisting of cyclopentadithiophene-based polymer photocatalysts ...
Organic polymers based on the donor-acceptor structure are a promising class of efficient photocatal...
Here, we present the use of mini-emulsion polymerization to generate small particle analogues of thr...
One novel cobalt-coordinated graphitic carbon nitride-type polymer (Co-g-CN) integrating the advanta...
Production of renewable fuels from solar energy and abundant resourses, such as water and carbon dio...
The use of hydrogen as a fuel, when generated from water using semiconductor photocatalysts and driv...
Organic polymer nanoparticles have been gaining attention in photovoltaics as a means to control the...
Organic conjugated polymer dots (Pdots) are emerging as a potential photocatalyst for hydrogen evolu...
Linear poly(p-phenylene)s are modestly active UV photocatalysts for hydrogen production in the prese...
Conjugated polymers have sparked much interest as photocatalysts for hydrogen production. However, b...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...
In this work, we report a highly efficient organic polymer nano-photocatalyst for light driven proto...
Photocatalysts formed from a single organic semiconductor typically suffer from inefficient intrinsi...
Development and understanding of catalytic reactions involved in fuel formation are crucial to be ab...
Organic semiconducting polymers exhibited promising photocatalytic behavior for hydrogen (H2) evolut...
A library of donor-acceptor system consisting of cyclopentadithiophene-based polymer photocatalysts ...
Organic polymers based on the donor-acceptor structure are a promising class of efficient photocatal...
Here, we present the use of mini-emulsion polymerization to generate small particle analogues of thr...
One novel cobalt-coordinated graphitic carbon nitride-type polymer (Co-g-CN) integrating the advanta...
Production of renewable fuels from solar energy and abundant resourses, such as water and carbon dio...
The use of hydrogen as a fuel, when generated from water using semiconductor photocatalysts and driv...
Organic polymer nanoparticles have been gaining attention in photovoltaics as a means to control the...
Organic conjugated polymer dots (Pdots) are emerging as a potential photocatalyst for hydrogen evolu...
Linear poly(p-phenylene)s are modestly active UV photocatalysts for hydrogen production in the prese...
Conjugated polymers have sparked much interest as photocatalysts for hydrogen production. However, b...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...