Carbon dots are an emerging family of zero-dimensional nanocarbons behaving as tunable light harvesters and photoactivated charge donors. Coupling them to carbon nanotubes, which are well-known electron acceptors with excellent charge transport capabilities, is very promising for several applications. Here, we first devised a route to achieve the stable electrostatic binding of carbon dots to multi- or single-walled carbon nanotubes, as confirmed by several experimental observations. The photoluminescence of carbon dots is strongly quenched when they contact either semiconductive or conductive nanotubes, indicating a strong electronic coupling to both. Theoretical simulations predict a favorable energy level alignment within these complexes...
Fluorescent carbon nanodots are a novel family of carbon-based nanoscale materials endowed with an o...
We report the observation of an ultrafast (∼ 430 fs) charge transfer process at the interface betwee...
The time scales for interfacial charge separation and recombination play crucial roles in determinin...
Carbon dots are an emerging family of zero-dimensional nanocarbons behaving as tunable light harvest...
Carbon dots are an emerging family of zero-dimensional nanocarbons behaving as tunable light harvest...
Carbon dots are an emerging family of zero-dimensional nanocarbons behaving as tunable light harvest...
Carbon dots are an emerging family of zero-dimensional nanocarbons behaving as tunable light harvest...
Among the photocatalysts which could be used for converting solar energy, polyoxometalates are often...
Among the photocatalysts which could be used for converting solar energy, polyoxometalates are often...
Building all-carbon based functional materials for light energy harvesting applications could be a s...
Fluorescent carbon nanodots are a novel family of carbon-based nanoscale materials endowed with an o...
In recent times, nanoscience is devoting growing interest to the easy assembly of well-established n...
In recent times, nanoscience is devoting growing interest to the easy assembly of well-established n...
Here, the ability of a novel near‐infrared dye to noncovalently self‐assemble onto the surface of si...
Fluorescent carbon nanodots are a novel family of carbon-based nanoscale materials endowed with an o...
Fluorescent carbon nanodots are a novel family of carbon-based nanoscale materials endowed with an o...
We report the observation of an ultrafast (∼ 430 fs) charge transfer process at the interface betwee...
The time scales for interfacial charge separation and recombination play crucial roles in determinin...
Carbon dots are an emerging family of zero-dimensional nanocarbons behaving as tunable light harvest...
Carbon dots are an emerging family of zero-dimensional nanocarbons behaving as tunable light harvest...
Carbon dots are an emerging family of zero-dimensional nanocarbons behaving as tunable light harvest...
Carbon dots are an emerging family of zero-dimensional nanocarbons behaving as tunable light harvest...
Among the photocatalysts which could be used for converting solar energy, polyoxometalates are often...
Among the photocatalysts which could be used for converting solar energy, polyoxometalates are often...
Building all-carbon based functional materials for light energy harvesting applications could be a s...
Fluorescent carbon nanodots are a novel family of carbon-based nanoscale materials endowed with an o...
In recent times, nanoscience is devoting growing interest to the easy assembly of well-established n...
In recent times, nanoscience is devoting growing interest to the easy assembly of well-established n...
Here, the ability of a novel near‐infrared dye to noncovalently self‐assemble onto the surface of si...
Fluorescent carbon nanodots are a novel family of carbon-based nanoscale materials endowed with an o...
Fluorescent carbon nanodots are a novel family of carbon-based nanoscale materials endowed with an o...
We report the observation of an ultrafast (∼ 430 fs) charge transfer process at the interface betwee...
The time scales for interfacial charge separation and recombination play crucial roles in determinin...