The tin oxide (SnO2) electron transport layer (ETL) plays a crucial role in perovskite solar cells (PSCs). However, the heterogeneous dispersion of commercial SnO2 colloidal precursors is far from optimized, resulting in dissatisfied device performance with SnO2 ETL. Herein, a multifunctional modification material, ammonium citrate (TAC), is used to modify the SnO2 ETL, bringing four benefits: (1) due to the electrostatic interaction between TAC molecules and SnO2 colloidal particles, more uniformly dispersed colloidal particles are obtained; (2) the TAC molecules distributed on the surface of SnO2 provide nucleation sites for the perovskite film growth, promoting the vertical growth of the perovskite crystal; (3) TAC-doped SnO2 shows highe...
Tin–lead (Sn–Pb) alloyed perovskites are promising candidates for next-generation photovoltaics due ...
Abstract Tin dioxide (SnO2) has been demonstrated as one of the promising electron transport layers ...
Interfacial modification that serves multiple roles is vital for the fabrication of efficient and st...
Metal oxides are commonly employed as electron transport layers (ETLs) for n-i-p perovskite solar ce...
Outstanding performance of perovskite solar cells (PSCs) is closely linked to the optoelectrical pro...
Outstanding performance of perovskite solar cells (PSCs) is closely linked to the optoelectrical pro...
The photovoltaic performance of a perovskite solar cell based on a new electron conducting SnO2 film...
Abstract The electron transport layer (ETL) is a key component of regular perovskite solar cells to ...
Perovskite solar cells (PSCs) having numerous advantages for photovoltaic applications, such as high...
The quality of the tin oxide (SnO2)/perovskite interface has become eminently critical for high-effi...
Defects in the electron transport layer (ETL), perovskite, and buried interface will result in consi...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
International audienceTin (IV) oxide is a highly promising electron transport layer (ETL) for lead h...
The aggregation of SnO2 nanocrystals due to van der Waals interactions is not conducive to the reali...
WOS:000525763900014Not only the poor interaction but also trap states at interfaces and grain bounda...
Tin–lead (Sn–Pb) alloyed perovskites are promising candidates for next-generation photovoltaics due ...
Abstract Tin dioxide (SnO2) has been demonstrated as one of the promising electron transport layers ...
Interfacial modification that serves multiple roles is vital for the fabrication of efficient and st...
Metal oxides are commonly employed as electron transport layers (ETLs) for n-i-p perovskite solar ce...
Outstanding performance of perovskite solar cells (PSCs) is closely linked to the optoelectrical pro...
Outstanding performance of perovskite solar cells (PSCs) is closely linked to the optoelectrical pro...
The photovoltaic performance of a perovskite solar cell based on a new electron conducting SnO2 film...
Abstract The electron transport layer (ETL) is a key component of regular perovskite solar cells to ...
Perovskite solar cells (PSCs) having numerous advantages for photovoltaic applications, such as high...
The quality of the tin oxide (SnO2)/perovskite interface has become eminently critical for high-effi...
Defects in the electron transport layer (ETL), perovskite, and buried interface will result in consi...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
International audienceTin (IV) oxide is a highly promising electron transport layer (ETL) for lead h...
The aggregation of SnO2 nanocrystals due to van der Waals interactions is not conducive to the reali...
WOS:000525763900014Not only the poor interaction but also trap states at interfaces and grain bounda...
Tin–lead (Sn–Pb) alloyed perovskites are promising candidates for next-generation photovoltaics due ...
Abstract Tin dioxide (SnO2) has been demonstrated as one of the promising electron transport layers ...
Interfacial modification that serves multiple roles is vital for the fabrication of efficient and st...