Interfacial engineering is a simple and effective strategy that can improve the photovoltaic performance in organic–inorganic perovskite solar cells (PSCs). Herein, a dopamine (DA) self-assembled monolayer (SAM) was introduced on the top of the SnO2 electron transporting layer (ETL) to modify the SnO2/perovskite interface. The processing temperature of the present devices is around 150 °C, and the power conversion efficiency of the PSCs was significantly improved to 16.65% compared to that of the device without modification (14.05%). Such enhancement in efficiency is mainly attributed to the improved quality of perovskite films by improving the affinity of the SnO2 ETL, thus leading to better carrier transport and low charge recombination a...
We present planar perovskite solar cells incorporating thin SnO 2 /Al 2 O 3 double electron transpor...
The continuous increase of energy demand and emission of greenhouse gases from the conventional foss...
Abstract The electron transport layer (ETL) is a key component of regular perovskite solar cells to ...
The under-coordinated defects within perovskite and its relevant interfaces always attract and trap ...
Perovskite solar cells (PSCs) having numerous advantages for photovoltaic applications, such as high...
WOS:000571041000002Despite the tremendous progress in the efficiency of perovsite solar cells (PSCs)...
WOS:000525763900014Not only the poor interaction but also trap states at interfaces and grain bounda...
International audienceWe present a facile molecular-level interface engineering strategy to augment ...
Simplifying device layout, particularly avoiding the complex fabrication steps and multiple high-tem...
In perovskite solar cells, the interfaces between the perovskite and charge-transporting layers cont...
Reducing the interfacial defects of perovskite films is key to improving the performance of perovski...
Current perovskite solar cell efficiency is close to silicon s record values. Yet, the roadblock for...
Nowadays, perovkite materials are considered to be the most promising absorber media for the third g...
Current perovskite solar cell efficiency is close to silicon's record values. Yet, the roadblock for...
SnO2 is widely used as the electron transport layer (ETL) in n–i–p perovskite solar cells. However, ...
We present planar perovskite solar cells incorporating thin SnO 2 /Al 2 O 3 double electron transpor...
The continuous increase of energy demand and emission of greenhouse gases from the conventional foss...
Abstract The electron transport layer (ETL) is a key component of regular perovskite solar cells to ...
The under-coordinated defects within perovskite and its relevant interfaces always attract and trap ...
Perovskite solar cells (PSCs) having numerous advantages for photovoltaic applications, such as high...
WOS:000571041000002Despite the tremendous progress in the efficiency of perovsite solar cells (PSCs)...
WOS:000525763900014Not only the poor interaction but also trap states at interfaces and grain bounda...
International audienceWe present a facile molecular-level interface engineering strategy to augment ...
Simplifying device layout, particularly avoiding the complex fabrication steps and multiple high-tem...
In perovskite solar cells, the interfaces between the perovskite and charge-transporting layers cont...
Reducing the interfacial defects of perovskite films is key to improving the performance of perovski...
Current perovskite solar cell efficiency is close to silicon s record values. Yet, the roadblock for...
Nowadays, perovkite materials are considered to be the most promising absorber media for the third g...
Current perovskite solar cell efficiency is close to silicon's record values. Yet, the roadblock for...
SnO2 is widely used as the electron transport layer (ETL) in n–i–p perovskite solar cells. However, ...
We present planar perovskite solar cells incorporating thin SnO 2 /Al 2 O 3 double electron transpor...
The continuous increase of energy demand and emission of greenhouse gases from the conventional foss...
Abstract The electron transport layer (ETL) is a key component of regular perovskite solar cells to ...