UA Shah, S Chen, GMG Khalaf, Z Jin… - Advanced Functional …, 2021 - Wiley Online Library
The wide bandgap Sb2S3 is considered to be one of the most promising absorber layers in single‐junction solar cells and a suitable top‐cell candidate for multi‐junction (tandem) solar …
M Li, J Fu, Q Xu, TC Sum - Advanced Materials, 2019 - Wiley Online Library
Rapid hot‐carrier cooling is a major loss channel in solar cells. Thermodynamic calculations reveal a 66% solar conversion efficiency for single junction cells (under 1 sun illumination) if …
Nonthermal plasmas have emerged as a viable synthesis technique for nanocrystal materials. Inherently solvent and ligand-free, nonthermal plasmas offer the ability to …
The indispensability and innovations in thin-film-based solar cells are gaining attention among researchers due to their tremendous growth as a sustainable energy source. The …
Silicon wafer solar cells continue to be the leading photovoltaic technology, and in many places are now providing a substantial portion of electricity generation. Further adoption of …
NN Lal, Y Dkhissi, W Li, Q Hou… - Advanced Energy …, 2017 - Wiley Online Library
The meteoric rise of perovskite single‐junction solar cells has been accompanied by similar stunning developments in perovskite tandem solar cells. Debuting with efficiencies less than …
The syntheses of colloidal silicon nanocrystals (Si-NCs) with dimensions in the 3–4 nm size regime as well as effective methodologies for their functionalization with alkyl, amine …
Third-generation approaches to photovoltaics (PVs) aim to achieve high-efficiency devices but still use thin-film, second-generation deposition methods. The concept is to do this with …
In the 1990s, nanoparticles and quantum dots began to be used in optical, electronic, and biological applications. Now they are being studied for use in solid-state quantum …