The possibility to tune chemical and physical properties in nanosized materials has a strong impact on a variety of technologies, including photovoltaics. One of the prominent research areas of nanomaterials for photovoltaics involves spectral conversion. Modification of the spectrum requires down- and/or upconversion or downshifting of the spectrum, meaning that the energy of photons is modified to either lower (down) or higher (up) energy. Nanostructures such as quantum dots, luminescent dye molecules, and lanthanide-doped glasses are capable of absorbing photons at a certain wavelength and emitting photons at a different (shorter or longer) wavelength. We will discuss upconversion by lanthanide compounds in various host materials and wil...
In this research one of the many possible methods to increase the efficiency of solar cells is descr...
In this research one of the many possible methods to increase the efficiency of solar cells is descr...
The efficiency of crystalline silicon solar cells is limited to ~30%, mainly due to spectral mismatc...
The possibility to tune chemical and physical properties in nanosized materials has a strong impact ...
Spectral conversion of sunlight is a promising route to reduce spectral mismatch losses that are res...
Spectral conversion of sunlight is a promising route to reduce spectral mismatch losses that are res...
Spectral conversion of sunlight is a promising route to reduce spectral mismatch losses that are res...
Spectral conversion of sunlight is a promising route to reduce spectral mismatch losses that are res...
Recently, thin-film solar cells enhanced with plasmonic nanoparticles have attracted much attention ...
Full spectrum absorption combined with effective generation and collection of charge carriers is a p...
Full spectrum absorption combined with effective generation and collection of charge carriers is a p...
Full spectrum absorption combined with effective generation and collection of charge carriers is a p...
Full spectrum absorption combined with effective generation and collection of charge carriers is a p...
Full spectrum absorption combined with effective generation and collection of charge carriers is a p...
Upconversion denotes the process of absorption of two or more photons followed by the emission of on...
In this research one of the many possible methods to increase the efficiency of solar cells is descr...
In this research one of the many possible methods to increase the efficiency of solar cells is descr...
The efficiency of crystalline silicon solar cells is limited to ~30%, mainly due to spectral mismatc...
The possibility to tune chemical and physical properties in nanosized materials has a strong impact ...
Spectral conversion of sunlight is a promising route to reduce spectral mismatch losses that are res...
Spectral conversion of sunlight is a promising route to reduce spectral mismatch losses that are res...
Spectral conversion of sunlight is a promising route to reduce spectral mismatch losses that are res...
Spectral conversion of sunlight is a promising route to reduce spectral mismatch losses that are res...
Recently, thin-film solar cells enhanced with plasmonic nanoparticles have attracted much attention ...
Full spectrum absorption combined with effective generation and collection of charge carriers is a p...
Full spectrum absorption combined with effective generation and collection of charge carriers is a p...
Full spectrum absorption combined with effective generation and collection of charge carriers is a p...
Full spectrum absorption combined with effective generation and collection of charge carriers is a p...
Full spectrum absorption combined with effective generation and collection of charge carriers is a p...
Upconversion denotes the process of absorption of two or more photons followed by the emission of on...
In this research one of the many possible methods to increase the efficiency of solar cells is descr...
In this research one of the many possible methods to increase the efficiency of solar cells is descr...
The efficiency of crystalline silicon solar cells is limited to ~30%, mainly due to spectral mismatc...