The impact of phase segregation in mixed halide perovskites: a matter of charge recombination rather than transport
Fundacio Scito (2021)
Understanding the crystallographic and microstructural properties of hybrid perovskite thin films through electron microscopy
Fundacio Scito (2021)
Dynamic Effects and Hydrogen Bonding in Mixed-Halide Perovskite Solar Cell Absorbers
The Journal of Physical Chemistry Letters American Chemical Society (ACS) 12:16 (2021) 3885-3890
Adduct-based p-doping of organic semiconductors
Nature Materials Nature Research 20 (2021) 1248-1254
Abstract:
Electronic doping of organic semiconductors is essential for their usage in highly efficient optoelectronic devices. Although molecular and metal complex-based dopants have already enabled significant progress of devices based on organic semiconductors, there remains a need for clean, efficient and low-cost dopants if a widespread transition towards larger-area organic electronic devices is to occur. Here we report dimethyl sulfoxide adducts as p-dopants that fulfil these conditions for a range of organic semiconductors. These adduct-based dopants are compatible with both solution and vapour-phase processing. We explore the doping mechanism and use the knowledge we gain to 'decouple' the dopants from the choice of counterion. We demonstrate that asymmetric p-doping is possible using solution processing routes, and demonstrate its use in metal halide perovskite solar cells, organic thin-film transistors and organic light-emitting diodes, which showcases the versatility of this doping approach.Chemical Interaction at the MoO3/CH3NH3PbI3–x Cl x Interface
ACS Applied Materials & Interfaces American Chemical Society (ACS) 13:14 (2021) 17085-17092