Organic semiconducting polymers dots (Pdots) have recently shown efficient photocatalytic activity for hydrogen evolution in an aqueous phase. However, colloidal Pdots face problems of aggregation and precipitation during the photocatalytic reaction due to unavoidable collisions between particles, thus resulting in a short catalytic lifetime. In this work, in situ preparation of PFBT Pdots on the surface of microbeads is reported. Results indicate that, with this facile method and support of a template, the photocatalytic properties of PFBT Pdots can be highly enhanced
Production of renewable fuels from solar energy and abundant resourses, such as water and carbon dio...
Semiconducting polymers are versatile materials for solar energy conversion and have gained populari...
Photocatalysts formed from a single organic semiconductor typically suffer from inefficient intrinsi...
Organic semiconducting polymers exhibited promising photocatalytic behavior for hydrogen (H2) evolut...
Mimicking nature is always beneficial for improving the performance of artificial systems. Artificia...
A semiartificial photosynthesis approach that utilizes enzymes for solar fuel production relies on e...
Organic conjugated polymer dots (Pdots) are emerging as a potential photocatalyst for hydrogen evolu...
Three conjugated polymers consisting of truxene donor units and different acceptor units are synthes...
Organic polymers based on the donor-acceptor structure are a promising class of efficient photocatal...
By mimicking natural photosynthesis, generating hydrogen through visible-light-driven splitting of w...
The work presented in this thesis aims at studying the photoelectrochemical properties of conjugated...
In this work, we report a highly efficient organic polymer nano-photocatalyst for light driven proto...
The effect of residual Pd on hydrogen evolution activity in conjugated polymer photocatalytic system...
Conjugated polymers of intrinsic microporosity show excellent performance as photocatalysts for sacr...
Microbubble fabrication of poly(dimethylsiloxane) (PDMS) beads with incorporated TiO2 provides a low...
Production of renewable fuels from solar energy and abundant resourses, such as water and carbon dio...
Semiconducting polymers are versatile materials for solar energy conversion and have gained populari...
Photocatalysts formed from a single organic semiconductor typically suffer from inefficient intrinsi...
Organic semiconducting polymers exhibited promising photocatalytic behavior for hydrogen (H2) evolut...
Mimicking nature is always beneficial for improving the performance of artificial systems. Artificia...
A semiartificial photosynthesis approach that utilizes enzymes for solar fuel production relies on e...
Organic conjugated polymer dots (Pdots) are emerging as a potential photocatalyst for hydrogen evolu...
Three conjugated polymers consisting of truxene donor units and different acceptor units are synthes...
Organic polymers based on the donor-acceptor structure are a promising class of efficient photocatal...
By mimicking natural photosynthesis, generating hydrogen through visible-light-driven splitting of w...
The work presented in this thesis aims at studying the photoelectrochemical properties of conjugated...
In this work, we report a highly efficient organic polymer nano-photocatalyst for light driven proto...
The effect of residual Pd on hydrogen evolution activity in conjugated polymer photocatalytic system...
Conjugated polymers of intrinsic microporosity show excellent performance as photocatalysts for sacr...
Microbubble fabrication of poly(dimethylsiloxane) (PDMS) beads with incorporated TiO2 provides a low...
Production of renewable fuels from solar energy and abundant resourses, such as water and carbon dio...
Semiconducting polymers are versatile materials for solar energy conversion and have gained populari...
Photocatalysts formed from a single organic semiconductor typically suffer from inefficient intrinsi...