In lead halide perovskite solar cells, there is at least one recycling event of electron-hole pair to photon to electron-hole pair at open circuit under solar illumination. This can lead to a significant reduction in the external photoluminescence yield from the internal yield. Here we show that, for an internal yield of 70%, we measure external yields as low as 15% in planar films, where light out-coupling is inefficient, but observe values as high as 57% in films on textured substrates that enhance out-coupling. We analyse in detail how externally measured rate constants and photoluminescence efficiencies relate to internal recombination processes under photon recycling. For this, we study the photo-excited carrier dynamics and use a rate...
Photon recycling, the iterative process of re-absorption and re-emission of photons in an absorbing ...
Explaining the time-dependent evolution of photoluminescence spectra of halide perovskite single cry...
This thesis focuses on the development of the next generation of solar panels. The motivation behind...
Photon recycling is a fundamental physical process that becomes especially important for photovoltai...
Photon recycling is a fundamental physical process that becomes especially important for photovoltai...
Lead-halide perovskites have emerged as high-performance photovoltaic materials. We mapped the propa...
Inorganic-organic lead-halide perovskite solar cells have reached efficiencies above 22% within a fe...
Careful interpretation of time-resolved photoluminescence (TRPL) measurements can substantially impr...
This data supports the findings of our publication "Enhancing photoluminescence yields in lead halid...
Although halide perovskite materials hold great promise for optoelectronics, defect-assisted recombi...
Perovskite light-emitting diodes have recently broken the 20% barrier for external quantum efficienc...
Photon recycling, that is, iterative self-absorption and re-emission by the photoactive layer itself...
Abstract: Perovskite light-emitting diodes have recently broken the 20% barrier for external quantum...
Efficiency and dynamics of radiative recombination of carriers are crucial figures of merit for opto...
Metal halide perovskites have emerged in recent years as promising photovoltaic materials due to the...
Photon recycling, the iterative process of re-absorption and re-emission of photons in an absorbing ...
Explaining the time-dependent evolution of photoluminescence spectra of halide perovskite single cry...
This thesis focuses on the development of the next generation of solar panels. The motivation behind...
Photon recycling is a fundamental physical process that becomes especially important for photovoltai...
Photon recycling is a fundamental physical process that becomes especially important for photovoltai...
Lead-halide perovskites have emerged as high-performance photovoltaic materials. We mapped the propa...
Inorganic-organic lead-halide perovskite solar cells have reached efficiencies above 22% within a fe...
Careful interpretation of time-resolved photoluminescence (TRPL) measurements can substantially impr...
This data supports the findings of our publication "Enhancing photoluminescence yields in lead halid...
Although halide perovskite materials hold great promise for optoelectronics, defect-assisted recombi...
Perovskite light-emitting diodes have recently broken the 20% barrier for external quantum efficienc...
Photon recycling, that is, iterative self-absorption and re-emission by the photoactive layer itself...
Abstract: Perovskite light-emitting diodes have recently broken the 20% barrier for external quantum...
Efficiency and dynamics of radiative recombination of carriers are crucial figures of merit for opto...
Metal halide perovskites have emerged in recent years as promising photovoltaic materials due to the...
Photon recycling, the iterative process of re-absorption and re-emission of photons in an absorbing ...
Explaining the time-dependent evolution of photoluminescence spectra of halide perovskite single cry...
This thesis focuses on the development of the next generation of solar panels. The motivation behind...