Transparent and pinhole free hole‐blocking layers such as TiO2 grown at low temperatures and by scalable processes are necessary to reduce production costs and thus enabling commercialization of perovskite solar cells. Here, the authors compare the transport properties of TiO2 compact layers grown by spray pyrolysis from commonly used titanium diisopropoxide bisacetylacetonate ([Ti(OPri)2(acac)2]) precursor to films grown by spray pyrolysis of TiCl4. Spray pyrolysis provides insights into the interdependence of precursor chemistry and electron transport properties of TiO2 films and their influence on the performance of the perovskite solar cells. X‐ray diffraction and X‐ray photoelectron spectroscopy data confirm the chemical and structural...
A highly functional electron transport layer (ETL) is essential for fabricating stable and efficient...
A low-temperature (90 °C) and directly grown anatase titanium dioxide (TiO2) nanocrystalline film us...
Self-assembled TiO2 foam-like films, were grown by the water based Streaming Process for Electrodele...
Transparent and pinhole free hole‐blocking layers such as TiO2 grown at low temperatures and by scal...
For proper function of the negative electrode of dye-sensitized and perovskite solar cells, the depo...
Properties of the electron transport layer (ETL) are known to influence the performance of lead hali...
The electron-transporting layer (ETL) material is one of the critical components of the n-i-p planar...
The fabrication of high efficiency perovskite solar cells at larger scales will rely on the optimize...
Two different TiO compact films, fabricated by sol-gel spin-coating (SC) and spray-pyrolysis (SP) pr...
Abstract Perovskite solar cells (PSCs) have attracted tremendous attentions due to its high performa...
The optimization of the hole-blocking layer in perovskite solar cells (PSC), typically based on TiO2...
To achieve high efficiency, the blocking layer (BL) is of critical importance in perovskite solar ce...
Flat titanium dioxide films, to be used as the acceptor layer in bilayer hybrid solar cell devices, ...
In order to realize high-throughput roll-to-roll manufacturing of flexible perovskite solar cells, l...
In recent years, lead halide perovskites have attracted considerable attention from the scientific c...
A highly functional electron transport layer (ETL) is essential for fabricating stable and efficient...
A low-temperature (90 °C) and directly grown anatase titanium dioxide (TiO2) nanocrystalline film us...
Self-assembled TiO2 foam-like films, were grown by the water based Streaming Process for Electrodele...
Transparent and pinhole free hole‐blocking layers such as TiO2 grown at low temperatures and by scal...
For proper function of the negative electrode of dye-sensitized and perovskite solar cells, the depo...
Properties of the electron transport layer (ETL) are known to influence the performance of lead hali...
The electron-transporting layer (ETL) material is one of the critical components of the n-i-p planar...
The fabrication of high efficiency perovskite solar cells at larger scales will rely on the optimize...
Two different TiO compact films, fabricated by sol-gel spin-coating (SC) and spray-pyrolysis (SP) pr...
Abstract Perovskite solar cells (PSCs) have attracted tremendous attentions due to its high performa...
The optimization of the hole-blocking layer in perovskite solar cells (PSC), typically based on TiO2...
To achieve high efficiency, the blocking layer (BL) is of critical importance in perovskite solar ce...
Flat titanium dioxide films, to be used as the acceptor layer in bilayer hybrid solar cell devices, ...
In order to realize high-throughput roll-to-roll manufacturing of flexible perovskite solar cells, l...
In recent years, lead halide perovskites have attracted considerable attention from the scientific c...
A highly functional electron transport layer (ETL) is essential for fabricating stable and efficient...
A low-temperature (90 °C) and directly grown anatase titanium dioxide (TiO2) nanocrystalline film us...
Self-assembled TiO2 foam-like films, were grown by the water based Streaming Process for Electrodele...