High-efficiency hole transport layer free perovskite solar cells (HTL-free PSCs) with economical and simplified device structure can greatly facilitate the commercialization of PSCs. However, eliminating the key HTL in PSCs results usually in a severe efficiency loss and poor carrier transfer due to the energy-level mismatching at the indium tin oxide (ITO)/perovskite interface. In this study, we solve this issue by introducing an organic monomolecular layer (ML) to raise the effective work function of ITO with the assistance of an interface dipole created by Sn–N bonds. The energy-level alignment at the ITO/perovskite interface is optimized with a barrier-free contact, which favors efficient charge transfer and suppressed nonradiative carr...
The under-coordinated defects within perovskite and its relevant interfaces always attract and trap ...
Interfacial engineering is essential for the development of highly efficient and stable solar cells ...
State-of-the-art n–i–p perovskite solar cells (PSCs) suffer from stability issues due to ionic inter...
High-efficiency hole transport layer free perovskite solar cells (HTL-free PSCs) with economical and...
Efficient electron transport layer-free perovskite solar cells (ETL-free PSCs) with cost-effective a...
Interests in minimalist device structure design of perovskite solar cells (PSCs) have accelerated th...
The inverted p-i-n perovskite solar cells hold high promise for scale-up toward commercialization. H...
Simplifying device layout, particularly avoiding the complex fabrication steps and multiple high-tem...
Simultaneously improving device efficiency and stability is the most important issue in perovskite s...
WOS:000570089000002Organic-inorganic halide structure such as hybrid perovskite materials has been a...
Interface engineering is an effective approach to decrease nonradiative recombination and the energy...
Interface engineering is an effective approach to decrease non-radiative recombination and energy ba...
The development of high-performance hole transport layer (HTL)-free perovskite solar cells (PSCs) wi...
WOS:000571041000002Despite the tremendous progress in the efficiency of perovsite solar cells (PSCs)...
In early studies on organic solar cells with high conductivity PEDOT:PSS, the contact between ITO an...
The under-coordinated defects within perovskite and its relevant interfaces always attract and trap ...
Interfacial engineering is essential for the development of highly efficient and stable solar cells ...
State-of-the-art n–i–p perovskite solar cells (PSCs) suffer from stability issues due to ionic inter...
High-efficiency hole transport layer free perovskite solar cells (HTL-free PSCs) with economical and...
Efficient electron transport layer-free perovskite solar cells (ETL-free PSCs) with cost-effective a...
Interests in minimalist device structure design of perovskite solar cells (PSCs) have accelerated th...
The inverted p-i-n perovskite solar cells hold high promise for scale-up toward commercialization. H...
Simplifying device layout, particularly avoiding the complex fabrication steps and multiple high-tem...
Simultaneously improving device efficiency and stability is the most important issue in perovskite s...
WOS:000570089000002Organic-inorganic halide structure such as hybrid perovskite materials has been a...
Interface engineering is an effective approach to decrease nonradiative recombination and the energy...
Interface engineering is an effective approach to decrease non-radiative recombination and energy ba...
The development of high-performance hole transport layer (HTL)-free perovskite solar cells (PSCs) wi...
WOS:000571041000002Despite the tremendous progress in the efficiency of perovsite solar cells (PSCs)...
In early studies on organic solar cells with high conductivity PEDOT:PSS, the contact between ITO an...
The under-coordinated defects within perovskite and its relevant interfaces always attract and trap ...
Interfacial engineering is essential for the development of highly efficient and stable solar cells ...
State-of-the-art n–i–p perovskite solar cells (PSCs) suffer from stability issues due to ionic inter...