Infrared PbS colloidal quantum dot (CQD)-based materials receive significant attention because of its unique properties. The PbS CQD ink that originates from ligand exchange of CQDs is highly potential for efficient and stable infrared CQD solar cells (CQDSCs) using low-temperature solution-phase processing. In this review, we present a comprehensive overview of CQD inks for the development of efficient infrared solar cells, which can effectively harvest the photons from the infrared wavelength region of the solar spectrum, including the importance of infrared absorbers for solar cells, the unique properties of CQDs, ligandexchange determined CQD inks, and related photovoltaic performance of CQDSCs. Finally, we present a brief conclusion, a...
Bandtail states in disordered semiconductor materials result in losses in open-circuit voltage (Voc)...
High global demand for energy coupled with dwindling fossil fuel supply has driven the development o...
Colloidal nanocrystals combine size- and facet-dependent properties with solution processing. They o...
Abstract Infrared solar cells are more effective than normal bandgap solar cells at reducing the spe...
Colloidal quantum dots (CQDs) are a thin film technology that has been used in optoelectronic device...
Developing low‐cost photovoltaic absorbers that can harvest the short‐wave infrared (SWIR) part of t...
Ever-increasing global energy demand and a diminishing fossil fuel supply have prompted the developm...
Semiconductors with bandgaps in the near- to mid-infrared can harvest solar light that is otherwise ...
The recent development of phase transfer ligand exchange methods for PbS quantum dots (QD) has enhan...
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...
Half of the sun’s power lies in the infrared. As a result, the optimal bandgaps for solar cells in b...
New inorganic ligands including halide anions have significantly accelerated progress in colloidal q...
Increasing global energy demand requires the development of clean energy sources that will help redu...
Colloidal quantum dots (CQDs) are solar photovoltaic materials synthesized and processed as an ink, ...
Bandtail states in disordered semiconductor materials result in losses in open-circuit voltage (Voc)...
High global demand for energy coupled with dwindling fossil fuel supply has driven the development o...
Colloidal nanocrystals combine size- and facet-dependent properties with solution processing. They o...
Abstract Infrared solar cells are more effective than normal bandgap solar cells at reducing the spe...
Colloidal quantum dots (CQDs) are a thin film technology that has been used in optoelectronic device...
Developing low‐cost photovoltaic absorbers that can harvest the short‐wave infrared (SWIR) part of t...
Ever-increasing global energy demand and a diminishing fossil fuel supply have prompted the developm...
Semiconductors with bandgaps in the near- to mid-infrared can harvest solar light that is otherwise ...
The recent development of phase transfer ligand exchange methods for PbS quantum dots (QD) has enhan...
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...
Half of the sun’s power lies in the infrared. As a result, the optimal bandgaps for solar cells in b...
New inorganic ligands including halide anions have significantly accelerated progress in colloidal q...
Increasing global energy demand requires the development of clean energy sources that will help redu...
Colloidal quantum dots (CQDs) are solar photovoltaic materials synthesized and processed as an ink, ...
Bandtail states in disordered semiconductor materials result in losses in open-circuit voltage (Voc)...
High global demand for energy coupled with dwindling fossil fuel supply has driven the development o...
Colloidal nanocrystals combine size- and facet-dependent properties with solution processing. They o...