The role of grain boundaries (GBs) in halide perovskite is an interesting topic but existing investigations are limited to the top surface. Here Song et al. employ tomographic AFM to study the buried features of grains and GBs, revealing coexistence of interconnected conducting and inert GBs
We explore a new characterization approach capable of probing the grain interior (GI) and grain boun...
Incorporation of alkali metals such as Cs+, Rb+, and K+ into hybrid organic-inorganic halide lead pe...
Metal-halide perovskites deposited by wet-chemical deposition have demonstrated great potential for ...
Grain boundaries (GBs) play an important role in organic–inorganic halide perovskite solar cells, wh...
Owing to the polycrystalline nature of hybrid perovskite thin films, the trap states in grain bounda...
Photoluminescence microscopy reveals subgrain special boundaries in FAPbI3 perosvkite thin films tha...
Grain interiors (GIs) and grain boundaries (GBs) of perovskites have been investigated using chemica...
In this work, methylammonium lead tribromide (MAPbBr3) single crystals are studied by noncontact ato...
Grain boundaries have been established to impact charge transport, recombination and thus the power ...
Grain boundaries play a key role in the performance of thin-film optoelectronic devices and yet thei...
Deciphering the atomic and electronic structures of interfaces is key to developing state-of-the-art...
Mixed-halide perovskites have emerged as a promising candidate for optoelectronics, due to their tun...
The optoelectronic performance of organic−inorganic halide perovskite (OIHP)-based devices has been ...
Perovskite-based photovoltaic (PV) devices are promising candidates for next-generation PV applicati...
Halide perovskites are emerging as revolutionary materials for optoelectronics. Their ionic nature ...
We explore a new characterization approach capable of probing the grain interior (GI) and grain boun...
Incorporation of alkali metals such as Cs+, Rb+, and K+ into hybrid organic-inorganic halide lead pe...
Metal-halide perovskites deposited by wet-chemical deposition have demonstrated great potential for ...
Grain boundaries (GBs) play an important role in organic–inorganic halide perovskite solar cells, wh...
Owing to the polycrystalline nature of hybrid perovskite thin films, the trap states in grain bounda...
Photoluminescence microscopy reveals subgrain special boundaries in FAPbI3 perosvkite thin films tha...
Grain interiors (GIs) and grain boundaries (GBs) of perovskites have been investigated using chemica...
In this work, methylammonium lead tribromide (MAPbBr3) single crystals are studied by noncontact ato...
Grain boundaries have been established to impact charge transport, recombination and thus the power ...
Grain boundaries play a key role in the performance of thin-film optoelectronic devices and yet thei...
Deciphering the atomic and electronic structures of interfaces is key to developing state-of-the-art...
Mixed-halide perovskites have emerged as a promising candidate for optoelectronics, due to their tun...
The optoelectronic performance of organic−inorganic halide perovskite (OIHP)-based devices has been ...
Perovskite-based photovoltaic (PV) devices are promising candidates for next-generation PV applicati...
Halide perovskites are emerging as revolutionary materials for optoelectronics. Their ionic nature ...
We explore a new characterization approach capable of probing the grain interior (GI) and grain boun...
Incorporation of alkali metals such as Cs+, Rb+, and K+ into hybrid organic-inorganic halide lead pe...
Metal-halide perovskites deposited by wet-chemical deposition have demonstrated great potential for ...