Mimicking nature is always beneficial for improving the performance of artificial systems. Artificial photosynthesis for hydrogen production is one of the examples, where we can derive significant inspiration from nature. In this study, polymer dots (Pdots) prepared using photoactive polymer PFODTBT and amphiphilic co-polymer under ultra-sonication exhibited a hollow structure mimicking a photosynthetic bacterial, which was highly beneficial for hydrogen evolution. A systematic study of this structure showed that the polymer shell acts as a biological membrane that maintains a slightly higher pH inside the cavity (pH 0.4) compared to the bulk solution. More importantly, a fast proton diffusion across the porous polymer shell was detected. T...
Three conjugated polymers consisting of truxene donor units and different acceptor units are synthes...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...
By mimicking natural photosynthesis, generating hydrogen through visible-light-driven splitting of w...
Mimicking nature is always beneficial for improving the performance of artificial systems. Artificia...
Organic semiconducting polymers exhibited promising photocatalytic behavior for hydrogen (H2) evolut...
A semiartificial photosynthesis approach that utilizes enzymes for solar fuel production relies on e...
Organic semiconducting polymers dots (Pdots) have recently shown efficient photocatalytic activity f...
In this work, we report a highly efficient organic polymer nano-photocatalyst for light driven proto...
Learning from nature, one of the most prominent goals of photocatalysis is to assemble multifunction...
Organic polymer nanoparticles have been gaining attention in photovoltaics as a means to control the...
Conjugated polymers of intrinsic microporosity show excellent performance as photocatalysts for sacr...
Developing highly efficient photocatalyts for water splitting is one of the grand challenges in sola...
Photocatalysts formed from a single organic semiconductor typically suffer from inefficient intrinsi...
Conjugated polymers are emerging as promising organic photocatalysts for photocatalytic hydrogen evo...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...
Three conjugated polymers consisting of truxene donor units and different acceptor units are synthes...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...
By mimicking natural photosynthesis, generating hydrogen through visible-light-driven splitting of w...
Mimicking nature is always beneficial for improving the performance of artificial systems. Artificia...
Organic semiconducting polymers exhibited promising photocatalytic behavior for hydrogen (H2) evolut...
A semiartificial photosynthesis approach that utilizes enzymes for solar fuel production relies on e...
Organic semiconducting polymers dots (Pdots) have recently shown efficient photocatalytic activity f...
In this work, we report a highly efficient organic polymer nano-photocatalyst for light driven proto...
Learning from nature, one of the most prominent goals of photocatalysis is to assemble multifunction...
Organic polymer nanoparticles have been gaining attention in photovoltaics as a means to control the...
Conjugated polymers of intrinsic microporosity show excellent performance as photocatalysts for sacr...
Developing highly efficient photocatalyts for water splitting is one of the grand challenges in sola...
Photocatalysts formed from a single organic semiconductor typically suffer from inefficient intrinsi...
Conjugated polymers are emerging as promising organic photocatalysts for photocatalytic hydrogen evo...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...
Three conjugated polymers consisting of truxene donor units and different acceptor units are synthes...
Photocatalytic hydrogen production from water offers an abundant, clean fuel source, but it is chall...
By mimicking natural photosynthesis, generating hydrogen through visible-light-driven splitting of w...