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Organometal halide perovskite solar cells: degradation and stability
Organometal halide perovskite solar cells have evolved in an exponential manner in the two
key areas of efficiency and stability. The power conversion efficiency (PCE) reached 20.1 …
key areas of efficiency and stability. The power conversion efficiency (PCE) reached 20.1 …
Surface chemistry of porphyrins and phthalocyanines
JM Gottfried - Surface Science Reports, 2015 - Elsevier
This review covers the surface chemistry of porphyrins, phthalocyanines, their metal
complexes, and related compounds, with particular focus on chemical reactions at …
complexes, and related compounds, with particular focus on chemical reactions at …
Elusive presence of chloride in mixed halide perovskite solar cells
The role of chloride in the MAPbI3–x Cl x perovskite is still limitedly understood, albeit
subjected of much debate. Here, we present a combined angle-resolved X-ray …
subjected of much debate. Here, we present a combined angle-resolved X-ray …
Recent advances in phthalocyanine‐based sensitizers for dye‐sensitized solar cells
Dye‐sensitized solar cells (DSSCs) based on nanocrystalline semiconductors have
attracted significant attention as lower‐cost alternatives to conventional silicon‐based solar …
attracted significant attention as lower‐cost alternatives to conventional silicon‐based solar …
Freestanding photocatalytic materials based on 3D graphene and polyporphyrins
A new concept in the formulation of hybrid nanostructured materials combining high quality
graphene 3D supported by Nickel foam and polyporphyrins for visible light photocatalytic …
graphene 3D supported by Nickel foam and polyporphyrins for visible light photocatalytic …
Nanostructured TiO2 Grown by Low-Temperature Reactive Sputtering for Planar Perovskite Solar Cells
Low-temperature nanostructured electron-transporting layers (ETLs) for perovskite solar
cells are grown by reactive sputtering at 160° C with thickness in the range 22–76 nm and …
cells are grown by reactive sputtering at 160° C with thickness in the range 22–76 nm and …
Nanostructured TiO2 thin films sputtered at room temperature as electron transport layer for flexible perovskite solar cell applications: impact of varying RF power
This work examines the adoption of radio frequency (RF) sputtering at power ranging from
100 to 300 W to deposit nanostructured titanium dioxide (TiO 2) thin films on indium tin oxide …
100 to 300 W to deposit nanostructured titanium dioxide (TiO 2) thin films on indium tin oxide …
Multi-Scale-Porosity TiO2 scaffolds grown by innovative sputtering methods for high throughput hybrid photovoltaics
We propose an up-scalable, reliable, contamination-free, rod-like TiO2 material grown by a
new method based on sputtering deposition concepts which offers a multi-scale porosity …
new method based on sputtering deposition concepts which offers a multi-scale porosity …
From PbI2 to MAPbI3 through Layered Intermediates
In the present work we describe the process of formation of methylammonium lead iodide
perovskite (MAPbI3) by reaction between [001] oriented PbI2 thin films and MAI. The …
perovskite (MAPbI3) by reaction between [001] oriented PbI2 thin films and MAI. The …
Engineering of porphyrin molecules for use as effective cathode interfacial modifiers in organic solar cells of enhanced efficiency and stability
In the present work, we effectively modify the TiO2 electron transport layer of organic solar
cells with an inverted architecture using appropriately engineered porphyrin molecules. The …
cells with an inverted architecture using appropriately engineered porphyrin molecules. The …