Perovskite solar cells combine high carrier mobilities with long carrier lifetimes and high radiative efficiencies. Despite this, full devices suffer from significant nonradiative recombination losses, limiting their VOC to values well below the Shockley Queisser limit. Here, recent advances in understanding nonradiative recombination in perovskite solar cells from picoseconds to steady state are presented, with an emphasis on the interfaces between the perovskite absorber and the charge transport layers. Quantification of the quasi amp; 8208;Fermi level splitting in perovskite films with and without attached transport layers allows to identify the origin of nonradiative recombination, and to explain the VOC of operational devices. These me...
The success of metal halide perovskite solar cells stems from high absorption combined with a low re...
Funder: EPSRC; Id: http://dx.doi.org/10.13039/501100000266Abstract: Ideally, the charge carrier life...
© 2020 IUPAC & De Gruyter. This work is licensed under a Creative Commons Attribution-NonCommercia...
Perovskite solar cells combine high carrier mobilities with long carrier lifetimes and high radiativ...
The performance of perovskite solar cells is predominantly limited by non radiative recombination, e...
The performance of perovskite solar cells is predominantly limited by non-radiative recombination, e...
Charge transport layers CTLs are key components of diffusion controlled perovskite solar cells, ho...
With close to 100% internal quantum efficiency over the absorption spectrum, photocurrents in perovs...
Charge transport layers (CTLs) are key components of diffusion controlled perovskite solar cells, ho...
2D Ruddlesden–Popper perovskite (RPP) solar cells have excellent environmental stability. However, t...
The large diffusion lengths recurrently measured in perovskite single crystals and films signal smal...
Ideally, the charge carrier lifetime in a solar cell is limited by the radiative free carrier recomb...
Photovoltaic solar cells based on metal halide perovskites have gained considerable attention over t...
Nonradiative carrier recombination plays a major role in affecting solar cells’ performance and powe...
The large diffusion lengths recurrently measured in perovskite single crystals and films signal smal...
The success of metal halide perovskite solar cells stems from high absorption combined with a low re...
Funder: EPSRC; Id: http://dx.doi.org/10.13039/501100000266Abstract: Ideally, the charge carrier life...
© 2020 IUPAC & De Gruyter. This work is licensed under a Creative Commons Attribution-NonCommercia...
Perovskite solar cells combine high carrier mobilities with long carrier lifetimes and high radiativ...
The performance of perovskite solar cells is predominantly limited by non radiative recombination, e...
The performance of perovskite solar cells is predominantly limited by non-radiative recombination, e...
Charge transport layers CTLs are key components of diffusion controlled perovskite solar cells, ho...
With close to 100% internal quantum efficiency over the absorption spectrum, photocurrents in perovs...
Charge transport layers (CTLs) are key components of diffusion controlled perovskite solar cells, ho...
2D Ruddlesden–Popper perovskite (RPP) solar cells have excellent environmental stability. However, t...
The large diffusion lengths recurrently measured in perovskite single crystals and films signal smal...
Ideally, the charge carrier lifetime in a solar cell is limited by the radiative free carrier recomb...
Photovoltaic solar cells based on metal halide perovskites have gained considerable attention over t...
Nonradiative carrier recombination plays a major role in affecting solar cells’ performance and powe...
The large diffusion lengths recurrently measured in perovskite single crystals and films signal smal...
The success of metal halide perovskite solar cells stems from high absorption combined with a low re...
Funder: EPSRC; Id: http://dx.doi.org/10.13039/501100000266Abstract: Ideally, the charge carrier life...
© 2020 IUPAC & De Gruyter. This work is licensed under a Creative Commons Attribution-NonCommercia...