The effect of residual Pd on hydrogen evolution activity in conjugated polymer photocatalytic systems is systematically investigated using colloidal poly(9,9-dioctylfluorene-alt-benzothiadiazole) (F8BT) nanoparticles as a model system. Residual Pd, originating from the synthesis of F8BT via Pd catalyzed polycondensation polymerization, is observed in the form of homogeneously distributed Pd nanoparticles within the polymer. Residual Pd is essential for any hydrogen evolution to be observed from this polymer, and very low Pd concentrations (<40 ppm) are sufficient to have a significant effect on the hydrogen evolution reaction (HER) rate. The HER rate increases linearly with increasing Pd concentration from <1 ppm to approximately 100 ppm, a...
Organic polymers based on the donor-acceptor structure are a promising class of efficient photocatal...
Heterogeneous catalysts form a highly important part of everyday life, ranging from the production o...
In this work, we report a highly efficient organic polymer nano-photocatalyst for light driven proto...
Semiconducting polymers are versatile materials for solar energy conversion and have gained populari...
Semiconducting polymers are versatile materials for solar energy conversion and have gained populari...
Organic semiconducting polymers exhibited promising photocatalytic behavior for hydrogen (H2) evolut...
A remarkable effect from the modification of electronic and geometric properties of Pd nanoparticles...
The interaction between Pd and TiO2 for promoting photocatalytic activity was investigated by tailor...
Selective hydrogenation of organic functionalities at environmentally benign conditions using visibl...
Conjugated polymers have sparked much interest as photocatalysts for hydrogen production. However, b...
Organic polymer nanoparticles have been gaining attention in photovoltaics as a means to control the...
An insight into the nano- and micro-structural morphology of a polymer supported Pd catalyst employe...
Pd@(BiPy-PEG-OMe) is a catalyst comprised of palladium nanoparticles (Pd-NPs) stabilized and made wa...
Developing highly efficient photocatalyts for water splitting is one of the grand challenges in sola...
Organic polymers based on the donor-acceptor structure are a promising class of efficient photocatal...
Heterogeneous catalysts form a highly important part of everyday life, ranging from the production o...
In this work, we report a highly efficient organic polymer nano-photocatalyst for light driven proto...
Semiconducting polymers are versatile materials for solar energy conversion and have gained populari...
Semiconducting polymers are versatile materials for solar energy conversion and have gained populari...
Organic semiconducting polymers exhibited promising photocatalytic behavior for hydrogen (H2) evolut...
A remarkable effect from the modification of electronic and geometric properties of Pd nanoparticles...
The interaction between Pd and TiO2 for promoting photocatalytic activity was investigated by tailor...
Selective hydrogenation of organic functionalities at environmentally benign conditions using visibl...
Conjugated polymers have sparked much interest as photocatalysts for hydrogen production. However, b...
Organic polymer nanoparticles have been gaining attention in photovoltaics as a means to control the...
An insight into the nano- and micro-structural morphology of a polymer supported Pd catalyst employe...
Pd@(BiPy-PEG-OMe) is a catalyst comprised of palladium nanoparticles (Pd-NPs) stabilized and made wa...
Developing highly efficient photocatalyts for water splitting is one of the grand challenges in sola...
Organic polymers based on the donor-acceptor structure are a promising class of efficient photocatal...
Heterogeneous catalysts form a highly important part of everyday life, ranging from the production o...
In this work, we report a highly efficient organic polymer nano-photocatalyst for light driven proto...