The addition of large hydrophobic cations to lead halide perovskites has significantly enhanced the environmental stability of photovoltaic cells based on these materials. However, the associated formation of two-dimensional structures inside the material can lead to dielectric confinement, higher exciton binding energies, wider bandgaps and limited charge-carrier mobilities. Here we show that such effects are not detrimental to the charge transport for carefully processed films comprising a self-assembled thin layer of quasi-two-dimensional (2D) perovskite interfaced with a 3D MAPbI3andnbsp;perovskite layer. We apply a combination of time-resolved photoluminescence and photoconductivity spectroscopy to reveal the charge-carrier recombinati...
Metal halide perovskites have emerged as a set of promising optoelectronic materials benefiting from...
Hybrid metal–halide perovskites are promising new materials for use in solar cells; however, their c...
Halide Perovskites are versatile materials for photovoltaic and light emission applications thanks t...
The addition of large hydrophobic cations to lead halide perovskites has significantly enhanced the ...
The addition of large hydrophobic cations to lead halide perovskites has significantly enhanced the ...
Hybrid metal halide perovskites are promising new materials for use in solar cells, however, their c...
Hybrid metal halide perovskites are promising new materials for use in solar cells, however, their c...
The use of layered, 2D perovskites can improve the stability of metal halide perovskite thin films a...
Understanding charge carrier extraction from the perovskite photoactive layer is critical to optimiz...
Lead-halide perovskites have emerged as high-performance photovoltaic materials. We mapped the propa...
In recent years, a huge success on photovoltaic and light emitting has been achieved in the field of...
Organic-inorganic hybrid perovskites have attracted immense attention primarily due to its outstandi...
Research is nowadays usually directed by its potentiality to birth technological applications of rel...
<p>The optoelectronic properties of hybrid perovskites can be easily tailored by varying their compo...
Mixed 2D/3D perovskite materials are of particular interest to the photovoltaics and light- emitting...
Metal halide perovskites have emerged as a set of promising optoelectronic materials benefiting from...
Hybrid metal–halide perovskites are promising new materials for use in solar cells; however, their c...
Halide Perovskites are versatile materials for photovoltaic and light emission applications thanks t...
The addition of large hydrophobic cations to lead halide perovskites has significantly enhanced the ...
The addition of large hydrophobic cations to lead halide perovskites has significantly enhanced the ...
Hybrid metal halide perovskites are promising new materials for use in solar cells, however, their c...
Hybrid metal halide perovskites are promising new materials for use in solar cells, however, their c...
The use of layered, 2D perovskites can improve the stability of metal halide perovskite thin films a...
Understanding charge carrier extraction from the perovskite photoactive layer is critical to optimiz...
Lead-halide perovskites have emerged as high-performance photovoltaic materials. We mapped the propa...
In recent years, a huge success on photovoltaic and light emitting has been achieved in the field of...
Organic-inorganic hybrid perovskites have attracted immense attention primarily due to its outstandi...
Research is nowadays usually directed by its potentiality to birth technological applications of rel...
<p>The optoelectronic properties of hybrid perovskites can be easily tailored by varying their compo...
Mixed 2D/3D perovskite materials are of particular interest to the photovoltaics and light- emitting...
Metal halide perovskites have emerged as a set of promising optoelectronic materials benefiting from...
Hybrid metal–halide perovskites are promising new materials for use in solar cells; however, their c...
Halide Perovskites are versatile materials for photovoltaic and light emission applications thanks t...