Surface passivation is essential to realize high photovoltaic performance for solar cells based on PbS quantum dots (QDs). The recently developed solution-phase ligand-exchange strategy can greatly simplify the device fabrication process compared with the traditional layer by layer method. However, the surface hydroxyl ligand (OH) on the PbS QD surface, a main source of trap states, cannot be avoided in the solution-phase ligand-exchange process and has not been paid attention yet. Meanwhile, the unsatisfactory colloidal stability of current PbS QD ink is also a barrier for its industrial application and waiting for solutions. Here, we demonstrate a multiple-passivation strategy by solution-phase ligand engineering in lead halide exchanged ...
The performance of devices containing colloidal quantum dot (CQD) films is strongly dependent on the...
Abstract Infrared solar cells are more effective than normal bandgap solar cells at reducing the spe...
While the power conversion efficiency (PCE) of colloidal quantum dot (CQD) solar cells can reach >...
Surface passivation is essential to realize high photovoltaic performance for solar cells based on P...
Surface passivation is essential to realize high photovoltaic performance for solar cells based on P...
Surface passivation is essential to realize high photovoltaic performance for solar cells based on P...
Surface passivation is essential to realize high photovoltaic performance for solar cells based on P...
The recent development of phase transfer ligand exchange methods for PbS quantum dots (QD) has enhan...
Thesis: Ph. D. in Physical Chemistry, Massachusetts Institute of Technology, Department of Chemistry...
Surface properties of colloidal quantum dots (CQDs) are critical for the transportation and recombin...
The recent development of phase transfer ligand exchange methods for PbS quantum dots (QD) has enhan...
The recent development of phase transfer ligand exchange methods for PbS quantum dots (QD) has enhan...
The fine control over the surface of lead sulfide colloidal quantum dots (PbS CQDs) is increasingly ...
The recent development of phase transfer ligand exchange methods for PbS quantum dots (QD) has enhan...
The recent development of phase transfer ligand exchange methods for PbS quantum dots (QD) has enhan...
The performance of devices containing colloidal quantum dot (CQD) films is strongly dependent on the...
Abstract Infrared solar cells are more effective than normal bandgap solar cells at reducing the spe...
While the power conversion efficiency (PCE) of colloidal quantum dot (CQD) solar cells can reach >...
Surface passivation is essential to realize high photovoltaic performance for solar cells based on P...
Surface passivation is essential to realize high photovoltaic performance for solar cells based on P...
Surface passivation is essential to realize high photovoltaic performance for solar cells based on P...
Surface passivation is essential to realize high photovoltaic performance for solar cells based on P...
The recent development of phase transfer ligand exchange methods for PbS quantum dots (QD) has enhan...
Thesis: Ph. D. in Physical Chemistry, Massachusetts Institute of Technology, Department of Chemistry...
Surface properties of colloidal quantum dots (CQDs) are critical for the transportation and recombin...
The recent development of phase transfer ligand exchange methods for PbS quantum dots (QD) has enhan...
The recent development of phase transfer ligand exchange methods for PbS quantum dots (QD) has enhan...
The fine control over the surface of lead sulfide colloidal quantum dots (PbS CQDs) is increasingly ...
The recent development of phase transfer ligand exchange methods for PbS quantum dots (QD) has enhan...
The recent development of phase transfer ligand exchange methods for PbS quantum dots (QD) has enhan...
The performance of devices containing colloidal quantum dot (CQD) films is strongly dependent on the...
Abstract Infrared solar cells are more effective than normal bandgap solar cells at reducing the spe...
While the power conversion efficiency (PCE) of colloidal quantum dot (CQD) solar cells can reach >...