All Printable Perovskite Solar Modules: PCE of 6% at A4-size!

All Printable Perovskite Solar Modules: PCE of 6% at A4-size!
A straightforward and effective technique which can yield homogenous perovskite films without the use of of anti-solvents and regardless of the complexity of the precursor compositions.
InGaN-based solar cells on common photovoltaic substrates could increase efficiency as high as 30%.
A dopant-free hole-transport material (HTM) for perovskite solar cells is synthesized in only two steps.
If scientists’ dreams came true, everyday items such as mobile devices, clothing and vehicles would be equipped with flexible solar cells.
Dopant-free, moisture-resistant hole-transport materials (HTMs) for perovskite solar cells based on derivatives of the dye anthanthrone (ANT) are developed by Sagar M. Jain from Swansea University Bay Campus, Prashant Sonar from Queensland University of Technology, and co-workers.
One of the most promising next-generation photovoltaic technologies is the Organo–lead halide perovskite solar cells. These solar cells have reached very high power conversion efficiencies (PCE) of more than 22% and in addition, their semiconducting perovskite layer...
An environment-friendly anti-solvent helps to produce higher efficiency Solar Cells in comparison to the commonly used toxic anti-solvent.
Phase competition in mixed perovskites can be resolved by this dual ion exchange process, which passivates grain boundaries and suppresses ion migration.
Biophotovoltaic devices by incorporation of oriented Photosystem I via phage display.