Abstract The interfacial defects and energy barrier are main reasons for interfacial nonradiative recombination. In addition, poor perovskite crystallization and incomplete conversion of PbI2 to perovskite restrict further enhancement of the photovoltaic performance of the devices using sequential deposition. Herein, a buried interface stabilization strategy that relies on the synergy of fluorine (F) and sulfonyl (S=O) functional groups is proposed. A series of potassium salts containing halide and non-halogen anions are employed to modify SnO2/perovskite buried interface. Multiple chemical bonds including hydrogen bond, coordination bond and ionic bond are realized, which strengthens interfacial contact and defect passivation effect. The c...
International audienceWe present a facile molecular-level interface engineering strategy to augment ...
WOS:000525763900014Not only the poor interaction but also trap states at interfaces and grain bounda...
Despite organic/inorganic lead halide perovskite solar cells becoming one of the most promising next...
Reducing the interfacial defects of perovskite films is key to improving the performance of perovski...
Surface passivation with organic halide salts is a powerful strategy to enhance the performance of p...
The under-coordinated defects within perovskite and its relevant interfaces always attract and trap ...
We modified perovskite/Spiro-OMeTAD interface by using two novel phosphonium salts containing PF6− c...
Interfacial modification that serves multiple roles is vital for the fabrication of efficient and st...
Abstract Passivating undercoordinated ions is an effective way to reduce the defect densities at the...
Surface passivation is an effective way to boost the efficiency and stability of perovskite solar ce...
Large-size organic halide passivation has been considered an efficient approach to enhance the perov...
Surface passivation treatment is a widely used strategy to resolve trap-mediated nonradiative recomb...
Surface passivation treatment is a widely used strategy to resolve trap-mediated nonradiative recomb...
The interfacial passivation technique is an effective method to improve the stability and photovolta...
In perovskite solar cells, the interfaces between the perovskite and charge-transporting layers cont...
International audienceWe present a facile molecular-level interface engineering strategy to augment ...
WOS:000525763900014Not only the poor interaction but also trap states at interfaces and grain bounda...
Despite organic/inorganic lead halide perovskite solar cells becoming one of the most promising next...
Reducing the interfacial defects of perovskite films is key to improving the performance of perovski...
Surface passivation with organic halide salts is a powerful strategy to enhance the performance of p...
The under-coordinated defects within perovskite and its relevant interfaces always attract and trap ...
We modified perovskite/Spiro-OMeTAD interface by using two novel phosphonium salts containing PF6− c...
Interfacial modification that serves multiple roles is vital for the fabrication of efficient and st...
Abstract Passivating undercoordinated ions is an effective way to reduce the defect densities at the...
Surface passivation is an effective way to boost the efficiency and stability of perovskite solar ce...
Large-size organic halide passivation has been considered an efficient approach to enhance the perov...
Surface passivation treatment is a widely used strategy to resolve trap-mediated nonradiative recomb...
Surface passivation treatment is a widely used strategy to resolve trap-mediated nonradiative recomb...
The interfacial passivation technique is an effective method to improve the stability and photovolta...
In perovskite solar cells, the interfaces between the perovskite and charge-transporting layers cont...
International audienceWe present a facile molecular-level interface engineering strategy to augment ...
WOS:000525763900014Not only the poor interaction but also trap states at interfaces and grain bounda...
Despite organic/inorganic lead halide perovskite solar cells becoming one of the most promising next...