Large-area, physically flexible, solution-cast photovoltaics are of urgent interest to realize low-cost solar cells.Polymer, polymer-fullerene, and polymer-nanocrystal photovoltaics absorb light only to wavelengths as long as 750 nm, with the exception of one recent report out to 1000 nm. Half of the sun’s power spectrum lies beyond 700 nm; one third beyond 1000 nm; and infrared emitters of growing interest in thermal photovoltaics emit predominantly in the 1–3μm range. We report herein a processible infrared photovoltaic device active beyond 1μm. Our best devices exhibit external quantum efficiencies exceeding 1% and estimated monochromatic internal quantum efficiencies greater than 10%. This represents an improvement by more than 1000 com...
International audienceNanocrystal-based solar cell technologies currently have two materials competi...
The endeavor of the scientific community to maximize the possibility to harvest Sun irradiation for ...
We fabricate NIR-active solar cells based on PbS quantum dots and a conventional conjugated polymer....
Large-area, physically flexible, solution-cast photovoltaics are of urgent interest to realize low-c...
Half of the sun’s power lies in the infrared. As a result, the optimal bandgaps for solar cells in b...
Solar energy harvesting demands low-cost energy conversion in the infrared from 1 – 2 μm. However, s...
Solar energy harvesting demands low-cost energy conversion in the infrared from 1 – 2 μm. However, s...
Developing low‐cost photovoltaic absorbers that can harvest the short‐wave infrared (SWIR) part of t...
If solar energy is to be a significant component of our energy supply, technologies are required whi...
We report a comparison of photoconductive performance of PbS nanocrystal/polymer composite devices c...
Colloidal nanocrystals combine size- and facet-dependent properties with solution processing. They o...
Materials optimized for single-junction solar spectral harvesting, such as silicon, perovskites, and...
Materials optimized for single-junction solar spectral harvesting, such as silicon, perovskites, and...
Ever-increasing global energy demand and a diminishing fossil fuel supply have prompted the developm...
The endeavor of the scientific community to maximize the possibility to harvest Sun irradiation for ...
International audienceNanocrystal-based solar cell technologies currently have two materials competi...
The endeavor of the scientific community to maximize the possibility to harvest Sun irradiation for ...
We fabricate NIR-active solar cells based on PbS quantum dots and a conventional conjugated polymer....
Large-area, physically flexible, solution-cast photovoltaics are of urgent interest to realize low-c...
Half of the sun’s power lies in the infrared. As a result, the optimal bandgaps for solar cells in b...
Solar energy harvesting demands low-cost energy conversion in the infrared from 1 – 2 μm. However, s...
Solar energy harvesting demands low-cost energy conversion in the infrared from 1 – 2 μm. However, s...
Developing low‐cost photovoltaic absorbers that can harvest the short‐wave infrared (SWIR) part of t...
If solar energy is to be a significant component of our energy supply, technologies are required whi...
We report a comparison of photoconductive performance of PbS nanocrystal/polymer composite devices c...
Colloidal nanocrystals combine size- and facet-dependent properties with solution processing. They o...
Materials optimized for single-junction solar spectral harvesting, such as silicon, perovskites, and...
Materials optimized for single-junction solar spectral harvesting, such as silicon, perovskites, and...
Ever-increasing global energy demand and a diminishing fossil fuel supply have prompted the developm...
The endeavor of the scientific community to maximize the possibility to harvest Sun irradiation for ...
International audienceNanocrystal-based solar cell technologies currently have two materials competi...
The endeavor of the scientific community to maximize the possibility to harvest Sun irradiation for ...
We fabricate NIR-active solar cells based on PbS quantum dots and a conventional conjugated polymer....