Developing highly efficient photocatalyts for water splitting is one of the grand challenges in solar energy conversion. Here, we report the rational design and synthesis of porous conjugated polymer (PCP) that photocatalytically generates hydrogen from water splitting. The design mimics natural photosynthetics systems with conjugated polymer component to harvest photons and the transition metal part to facilitate catalytic activities. A series of PCPs have been synthesized with different light harvesting chromophores and transition metal binding bipyridyl (bpy) sites. The photocatalytic activity of these bpy-containing PCPs can be greatly enhanced due to the improved light absorption, better wettability, local ordering structure, and the i...
Conjugated polymers (CPs) as photocatalysts have evoked substantial interest. Their geometries and p...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...
Water splitting using polymer photocatalysts is a key technology to a truly sustainable hydrogen-bas...
Artificial photosynthesis aiming to capture and convert renewable solar energy into solar fuels (e.g...
Porous conjugated polymer (PCP) is a new kind of photocatalyst for photocatalytic hydrogen productio...
Donor–acceptor (D–A)-type conjugated polymers are emerging as a promising platform for solar to chem...
Conjugated polymers of intrinsic microporosity show excellent performance as photocatalysts for sacr...
Conjugated microporous polymers (CMPs) have been used as photocatalysts for hydrogen production from...
Developing highly efficient photocatalysts for artificial photosynthesis is one of the grand challen...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...
Developing photocatalytic systems for water splitting to generate oxygen and hydrogen is one of the ...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...
Polymer photocatalysts have received growing attention in recent years for photocatalytic hydrogen p...
In pursuit of inexpensive and earth abundant photocatalysts for solar hydrogen production from water...
Polymer photocatalysts have received growing attention in recent years for photocatalytic hydrogen p...
Conjugated polymers (CPs) as photocatalysts have evoked substantial interest. Their geometries and p...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...
Water splitting using polymer photocatalysts is a key technology to a truly sustainable hydrogen-bas...
Artificial photosynthesis aiming to capture and convert renewable solar energy into solar fuels (e.g...
Porous conjugated polymer (PCP) is a new kind of photocatalyst for photocatalytic hydrogen productio...
Donor–acceptor (D–A)-type conjugated polymers are emerging as a promising platform for solar to chem...
Conjugated polymers of intrinsic microporosity show excellent performance as photocatalysts for sacr...
Conjugated microporous polymers (CMPs) have been used as photocatalysts for hydrogen production from...
Developing highly efficient photocatalysts for artificial photosynthesis is one of the grand challen...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...
Developing photocatalytic systems for water splitting to generate oxygen and hydrogen is one of the ...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...
Polymer photocatalysts have received growing attention in recent years for photocatalytic hydrogen p...
In pursuit of inexpensive and earth abundant photocatalysts for solar hydrogen production from water...
Polymer photocatalysts have received growing attention in recent years for photocatalytic hydrogen p...
Conjugated polymers (CPs) as photocatalysts have evoked substantial interest. Their geometries and p...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...
Water splitting using polymer photocatalysts is a key technology to a truly sustainable hydrogen-bas...