Lead sulfide quantum dots (PbS QDs) show great potential for efficient, low cost photovoltaic applications. Currently, device efficiencies are limited by the high density of trap states caused by lattice imperfections on the QD surface. Introducing a thin shell of a wide bandgap semiconductor to the QD surface is a promising method to passivate these trap states. Here we demonstrate solar cells made from PbS-CdS core-shell QDs, yielding a 147 mV increase in V-OC compared to core only PbS QDs. We explore the physical reason for this enhancement and demonstrate that it is indeed caused by improved passivation of the PbS surface by the CdS shell, leading to a lower electron trap density.</p
Current efforts on lead sulfide quantum dot (PbS QD) solar cells are mostly paid to the device archi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Lead sulfide quantum dot (PbS QD) solar cell efficiencies have improved rapidly over the past years ...
Lead sulfide quantum dots (PbS QDs) show great potential for efficient, low cost photovoltaic applic...
Lead sulfide quantum dots (PbS QDs) show great potential for efficient, low cost photovoltaic applic...
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...
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...
Current efforts on lead sulfide quantum dot (PbS QD) solar cells are mostly paid to the device archi...
Quantum dot photovoltaics (QDPV) offer the potential for low-cost solar cells. To develop strategies...
Current efforts on lead sulfide quantum dot (PbS QD) solar cells are mostly paid to the device archi...
Current efforts on lead sulfide quantum dot (PbS QD) solar cells are mostly paid to the device archi...
Current efforts on lead sulfide quantum dot (PbS QD) solar cells are mostly paid to the device archi...
Current efforts on lead sulfide quantum dot (PbS QD) solar cells are mostly paid to the device archi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Lead sulfide quantum dot (PbS QD) solar cell efficiencies have improved rapidly over the past years ...
Lead sulfide quantum dots (PbS QDs) show great potential for efficient, low cost photovoltaic applic...
Lead sulfide quantum dots (PbS QDs) show great potential for efficient, low cost photovoltaic applic...
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...
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...
Current efforts on lead sulfide quantum dot (PbS QD) solar cells are mostly paid to the device archi...
Quantum dot photovoltaics (QDPV) offer the potential for low-cost solar cells. To develop strategies...
Current efforts on lead sulfide quantum dot (PbS QD) solar cells are mostly paid to the device archi...
Current efforts on lead sulfide quantum dot (PbS QD) solar cells are mostly paid to the device archi...
Current efforts on lead sulfide quantum dot (PbS QD) solar cells are mostly paid to the device archi...
Current efforts on lead sulfide quantum dot (PbS QD) solar cells are mostly paid to the device archi...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Lead sulfide quantum dot (PbS QD) solar cell efficiencies have improved rapidly over the past years ...