Solar cells incorporating lead halide-based perovskite absorbers can exhibit impressive power conversion efficiencies (PCEs), recently surpassing 15%. Despite rapid developments, achieving precise control over the morphologies of the perovskite films (minimizing pore formation) and enhanced stability and reproducibility of the devices remain challenging, both of which are necessary for further advancements. Here we demonstrate vacuum-assisted thermal annealing as an effective means for controlling the composition and morphology of the CH3NH3PbI3 films formed from the precursors of PbCl2 and CH3NH3I. We identify the critical role played by the byproduct of CH3NH3Cl on the formation and the photovoltaic performance of the perovskite film. By ...
Perovskite solar cells (PSCs) though in its development stage, has been of interest to Scientists re...
We report here the discovery of a unique room-temperature watervapor annealing (WVA) method to fabri...
Film uniformity and large crystalline size are indispensable and critical for obtaining high perform...
Solar cells incorporating lead halide-based perovskite absorbers can exhibit impressive power conver...
Solar cells incorporating lead halide-based perovskite absorbers can exhibit impressive power conver...
Crystalline quality of perovskite materials is crucial to the photovoltaic performance of perovskite...
ow-temperature, solution-processable solar cells have become very attractive because they can be man...
Herein, we demonstrate that the facile face-down annealing route which effectively confines the evap...
The solvent-engineering method is widely used to fabricate top-performing perovskite solar cells, wh...
The deposition of dense and uniform perovskite films with large grains is crucial for fabricating hi...
We report, for the first time, on the synthesis of perovskite films by thermal annealing of evaporat...
Thermal annealing and precursor composition play critical roles in crystallinity control and morphol...
The deposition of dense and uniform perovskite films with large grains is crucial for fabricating hi...
Preparation of black formamidinium lead iodide (FAPbI3) requires high temperature annealing and the ...
The photovoltaic performance of perovskite solar cells (PVSCs) is extremely dependent on the morphol...
Perovskite solar cells (PSCs) though in its development stage, has been of interest to Scientists re...
We report here the discovery of a unique room-temperature watervapor annealing (WVA) method to fabri...
Film uniformity and large crystalline size are indispensable and critical for obtaining high perform...
Solar cells incorporating lead halide-based perovskite absorbers can exhibit impressive power conver...
Solar cells incorporating lead halide-based perovskite absorbers can exhibit impressive power conver...
Crystalline quality of perovskite materials is crucial to the photovoltaic performance of perovskite...
ow-temperature, solution-processable solar cells have become very attractive because they can be man...
Herein, we demonstrate that the facile face-down annealing route which effectively confines the evap...
The solvent-engineering method is widely used to fabricate top-performing perovskite solar cells, wh...
The deposition of dense and uniform perovskite films with large grains is crucial for fabricating hi...
We report, for the first time, on the synthesis of perovskite films by thermal annealing of evaporat...
Thermal annealing and precursor composition play critical roles in crystallinity control and morphol...
The deposition of dense and uniform perovskite films with large grains is crucial for fabricating hi...
Preparation of black formamidinium lead iodide (FAPbI3) requires high temperature annealing and the ...
The photovoltaic performance of perovskite solar cells (PVSCs) is extremely dependent on the morphol...
Perovskite solar cells (PSCs) though in its development stage, has been of interest to Scientists re...
We report here the discovery of a unique room-temperature watervapor annealing (WVA) method to fabri...
Film uniformity and large crystalline size are indispensable and critical for obtaining high perform...