Enhanced near infrared photoresponse in plasmonic InGaAs/GaAs quantum dot solar cells (QDSC) is demonstrated. Long wavelength light absorption in the wetting-layer and quantum-dot region of the quantum dot solar cell is enhanced through scattering of light by silver nanoparticles deposited on the solar cell surface. Plasmonic light trapping results in simultaneous increase in short-circuit current density by 5.3% and open circuit voltage by 0.9% in the QDSC, leading to an overall efficiency enhancement of 7.6%
Semiconductor quantum dots (QDs) are known for their high two-photon absorption (TPA) capacity. This...
The use of narrow band gap semiconductors such as PbS may expand the light absorption range to the n...
Highly efficient, PbS:Hg quantum dot-sensitized, plasmonic solar cells with TiO2 triple-layer photoa...
Enhanced near infrared photoresponse in plasmonic InGaAs/GaAs quantum dot solar cells (QDSC) is demo...
InAs quantum dots have been used to extend the absorption edge of InGaAs/GaAs quantum well solar cel...
Colloidal quantum dots (CQD) are used in the fabrication of efficient, low-cost solar cells synthesi...
A new configuration of a plasmonic quantum dots solar structure is proposed. Gold-silver core-shell ...
Recent advances in spectrally tuned, solution-processed plasmonic nanoparticles have provided unprec...
To improve quantum dot solar cell performance, it is crucial to make efficient use of the available ...
To improve quantum dot solar cell performance, it is crucial to make efficient use of the available ...
We demonstrate that plasmonic light trapping effect can be used to improve all the main device chara...
A synthetic approach has recently been developed which results in Cu<sub><i>x</i></sub>In<sub><i>y</...
The endeavor of the scientific community to maximize the possibility to harvest Sun irradiation for ...
Poor absorption of low-energy photons by available dyes are one of major factors limiting further...
The endeavor of the scientific community to maximize the possibility to harvest Sun irradiation for ...
Semiconductor quantum dots (QDs) are known for their high two-photon absorption (TPA) capacity. This...
The use of narrow band gap semiconductors such as PbS may expand the light absorption range to the n...
Highly efficient, PbS:Hg quantum dot-sensitized, plasmonic solar cells with TiO2 triple-layer photoa...
Enhanced near infrared photoresponse in plasmonic InGaAs/GaAs quantum dot solar cells (QDSC) is demo...
InAs quantum dots have been used to extend the absorption edge of InGaAs/GaAs quantum well solar cel...
Colloidal quantum dots (CQD) are used in the fabrication of efficient, low-cost solar cells synthesi...
A new configuration of a plasmonic quantum dots solar structure is proposed. Gold-silver core-shell ...
Recent advances in spectrally tuned, solution-processed plasmonic nanoparticles have provided unprec...
To improve quantum dot solar cell performance, it is crucial to make efficient use of the available ...
To improve quantum dot solar cell performance, it is crucial to make efficient use of the available ...
We demonstrate that plasmonic light trapping effect can be used to improve all the main device chara...
A synthetic approach has recently been developed which results in Cu<sub><i>x</i></sub>In<sub><i>y</...
The endeavor of the scientific community to maximize the possibility to harvest Sun irradiation for ...
Poor absorption of low-energy photons by available dyes are one of major factors limiting further...
The endeavor of the scientific community to maximize the possibility to harvest Sun irradiation for ...
Semiconductor quantum dots (QDs) are known for their high two-photon absorption (TPA) capacity. This...
The use of narrow band gap semiconductors such as PbS may expand the light absorption range to the n...
Highly efficient, PbS:Hg quantum dot-sensitized, plasmonic solar cells with TiO2 triple-layer photoa...