We investigate time-dependent inorganic ligand exchanging effect and photovoltaic performance of lead sulfide (PbS) nanocrystal films. With optimal processing time, volume shrinkage induced by residual oleic acid of the PbS colloidal quantum dot (CQD) was minimized and a crack-free film was obtained with improved flatness. Furthermore, sufficient surface passivation significantly increased the packing density by replacing from long oleic acid to a short iodide molecule. It thus facilities exciton dissociation via enhanced charge carrier transport in PbS CQD films, resulting in the improved power conversion efficiency from 3.39% to 6.62%. We also found that excess iodine ions on the PbS surface rather hinder high photovoltaic performance of ...
Quantum dot sensitized solar cells (QDSSCs) are interesting third generation solar cells that have p...
Control of quantum-dot (QD) surface chemistry offers a direct approach for the tuning of charge-carr...
Light-harvesting devices made from lead sulfide quantum dot (QD) absorbers are one of the many promi...
We investigate time-dependent inorganic ligand exchanging effect and photovoltaic performance of lea...
We investigate time-dependent inorganic ligand exchanging effect and photovoltaic performance of lea...
We investigate time-dependent inorganic ligand exchanging effect and photovoltaic performance of lea...
We investigate time-dependent inorganic ligand exchanging effect and photovoltaic performance of lea...
Suitable post-synthesis surface modification of lead-chalcogenide quantum dots (QDs) is crucial to e...
Thesis: Ph. D. in Physical Chemistry, Massachusetts Institute of Technology, Department of Chemistry...
The power conversion efficiency of colloidal PbS‐quantum‐dot (QD)‐based solar cells is significantly...
Colloidal quantum dot (CQD) photovoltaics offer a promising approach to harvest the near-IR region o...
Surface properties of colloidal quantum dots (CQDs) are critical for the transportation and recombin...
This thesis focuses on the device physics of PbS QDs in electronic devices and the fabrication and o...
This thesis focuses on the device physics of PbS QDs in electronic devices and the fabrication and o...
This thesis focuses on the device physics of PbS QDs in electronic devices and the fabrication and o...
Quantum dot sensitized solar cells (QDSSCs) are interesting third generation solar cells that have p...
Control of quantum-dot (QD) surface chemistry offers a direct approach for the tuning of charge-carr...
Light-harvesting devices made from lead sulfide quantum dot (QD) absorbers are one of the many promi...
We investigate time-dependent inorganic ligand exchanging effect and photovoltaic performance of lea...
We investigate time-dependent inorganic ligand exchanging effect and photovoltaic performance of lea...
We investigate time-dependent inorganic ligand exchanging effect and photovoltaic performance of lea...
We investigate time-dependent inorganic ligand exchanging effect and photovoltaic performance of lea...
Suitable post-synthesis surface modification of lead-chalcogenide quantum dots (QDs) is crucial to e...
Thesis: Ph. D. in Physical Chemistry, Massachusetts Institute of Technology, Department of Chemistry...
The power conversion efficiency of colloidal PbS‐quantum‐dot (QD)‐based solar cells is significantly...
Colloidal quantum dot (CQD) photovoltaics offer a promising approach to harvest the near-IR region o...
Surface properties of colloidal quantum dots (CQDs) are critical for the transportation and recombin...
This thesis focuses on the device physics of PbS QDs in electronic devices and the fabrication and o...
This thesis focuses on the device physics of PbS QDs in electronic devices and the fabrication and o...
This thesis focuses on the device physics of PbS QDs in electronic devices and the fabrication and o...
Quantum dot sensitized solar cells (QDSSCs) are interesting third generation solar cells that have p...
Control of quantum-dot (QD) surface chemistry offers a direct approach for the tuning of charge-carr...
Light-harvesting devices made from lead sulfide quantum dot (QD) absorbers are one of the many promi...