The success of halide perovskites in a host of optoelectronic applications is often attributed to their long photoexcited carrier lifetimes, which has led to charge-carrier recombination processes being described as unique compared to other semiconductors. Here, we integrate recent literature findings to provide a critical assessment of the factors we believe are most likely controlling recombination in the most widely studied halide perovskite systems. We focus on four mechanisms that have been proposed to affect measured charge carrier recombination lifetimes, namely: (1) recombination via trap states, (2) polaron formation, (3) the indirect nature of the bandgap (e.g., Rashba effect), and (4) photon recycling. We scrutinize the evidence ...
An understanding of charge-carrier recombination processes is essential for the development of hybri...
In this thesis, we investigate the nature of charge carrier generation, relaxation and recombination...
Elucidating the decay mechanisms of photoexcited charge carriers is key to improving the efficiency ...
The success of halide perovskites in a host of optoelectronic applications is often attributed to th...
Trap‐related charge‐carrier recombination fundamentally limits the performance of perovskite solar c...
The generation and recombination of charge carriers in semiconductors through photons controls photo...
Hybrid organic-inorganic metal halide perovskites have recently emerged as exciting new light-harves...
Careful interpretation of time-resolved photoluminescence (TRPL) measurements can substantially impr...
Photovoltaic devices based on metal halide perovskites are rapidly improving in efficiency. Once the...
Explaining the time-dependent evolution of photoluminescence spectra of halide perovskite single cry...
Metal-halide perovskites and nanowires are both examples of novel semi- conductors with the potentia...
We studied charge carrier recombination in methylammonium lead iodide (MAPbI3) perovskite and the im...
It is crucially required to understand charge traps in CH₃NH₃PbI₃ perovskites, which severely affect...
Ideally, the charge carrier lifetime in a solar cell is limited by the radiative free carrier recomb...
One of the greatest attributes of metal halide perovskite solar cells is their surprisingly low loss...
An understanding of charge-carrier recombination processes is essential for the development of hybri...
In this thesis, we investigate the nature of charge carrier generation, relaxation and recombination...
Elucidating the decay mechanisms of photoexcited charge carriers is key to improving the efficiency ...
The success of halide perovskites in a host of optoelectronic applications is often attributed to th...
Trap‐related charge‐carrier recombination fundamentally limits the performance of perovskite solar c...
The generation and recombination of charge carriers in semiconductors through photons controls photo...
Hybrid organic-inorganic metal halide perovskites have recently emerged as exciting new light-harves...
Careful interpretation of time-resolved photoluminescence (TRPL) measurements can substantially impr...
Photovoltaic devices based on metal halide perovskites are rapidly improving in efficiency. Once the...
Explaining the time-dependent evolution of photoluminescence spectra of halide perovskite single cry...
Metal-halide perovskites and nanowires are both examples of novel semi- conductors with the potentia...
We studied charge carrier recombination in methylammonium lead iodide (MAPbI3) perovskite and the im...
It is crucially required to understand charge traps in CH₃NH₃PbI₃ perovskites, which severely affect...
Ideally, the charge carrier lifetime in a solar cell is limited by the radiative free carrier recomb...
One of the greatest attributes of metal halide perovskite solar cells is their surprisingly low loss...
An understanding of charge-carrier recombination processes is essential for the development of hybri...
In this thesis, we investigate the nature of charge carrier generation, relaxation and recombination...
Elucidating the decay mechanisms of photoexcited charge carriers is key to improving the efficiency ...