The bandgap tunability of mixed-halide perovskites makes them promising candidates for light-emitting diodes and tandem solar cells. However, illuminating mixed-halide perovskites results in the formation of segregated phases enriched in a single halide. This segregation occurs through ion migration, which is also observed in single-halide compositions, and whose control is thus essential to enhance the lifetime and stability. Using pressure-dependent transient absorption spectroscopy, we find that the formation rates of both iodide-and bromide-rich phases in MAPb(BrxI1-x)3 reduce by 2 orders of magnitude on increasing the pressure to 0.3 GPa. We explain this reduction from a compression-induced increase of the activation energy for halide ...
Halide alloying in metal halide perovskites is a useful tool for optoelectronic applications requiri...
Metal halide perovskites have garnered a great deal of interest over the last few years due to their...
Photo- and charge-carrier-induced ion migration is a major challenge when utilizing metal halide per...
The bandgap tunability of mixed-halide perovskites makes them promising candidates for light-emittin...
The bandgap tunability of mixed-halide perovskites makes them promising candidates for light-emittin...
The bandgap tunability of mixed-halide perovskites makes them promising candidates for light-emittin...
The bandgap tunability of mixed-halide perovskites makes them promising candidates for light-emittin...
Mixing iodide and bromide in halide perovskite semiconductors is an effective strategy to tune their...
Mixing iodide and bromide in halide perovskite semiconductors is an effective strategy to tune their...
Mixing iodide and bromide in halide perovskite semiconductors is an effective strategy to tune their...
Mixing iodide and bromide in halide perovskite semiconductors is an effective strategy to tune their...
Mixing iodide and bromide in halide perovskite semiconductors is an effective strategy to tune their...
Halide alloying in metal halide perovskites is a useful tool for optoelectronic applications requiri...
Halide alloying in metal halide perovskites is a useful tool for optoelectronic applications requiri...
Halide alloying in metal halide perovskites is a useful tool for optoelectronic applications requiri...
Halide alloying in metal halide perovskites is a useful tool for optoelectronic applications requiri...
Metal halide perovskites have garnered a great deal of interest over the last few years due to their...
Photo- and charge-carrier-induced ion migration is a major challenge when utilizing metal halide per...
The bandgap tunability of mixed-halide perovskites makes them promising candidates for light-emittin...
The bandgap tunability of mixed-halide perovskites makes them promising candidates for light-emittin...
The bandgap tunability of mixed-halide perovskites makes them promising candidates for light-emittin...
The bandgap tunability of mixed-halide perovskites makes them promising candidates for light-emittin...
Mixing iodide and bromide in halide perovskite semiconductors is an effective strategy to tune their...
Mixing iodide and bromide in halide perovskite semiconductors is an effective strategy to tune their...
Mixing iodide and bromide in halide perovskite semiconductors is an effective strategy to tune their...
Mixing iodide and bromide in halide perovskite semiconductors is an effective strategy to tune their...
Mixing iodide and bromide in halide perovskite semiconductors is an effective strategy to tune their...
Halide alloying in metal halide perovskites is a useful tool for optoelectronic applications requiri...
Halide alloying in metal halide perovskites is a useful tool for optoelectronic applications requiri...
Halide alloying in metal halide perovskites is a useful tool for optoelectronic applications requiri...
Halide alloying in metal halide perovskites is a useful tool for optoelectronic applications requiri...
Metal halide perovskites have garnered a great deal of interest over the last few years due to their...
Photo- and charge-carrier-induced ion migration is a major challenge when utilizing metal halide per...