Recent success in achieving highly stable Rb-containing organolead halide perovskites has indicated the possibility of incorporating small monovalent cations, which cannot fit in the lead-halide cage with an appropriate tolerance factor, into the perovskite lattice while maintaining a pure stable "black" phase. In this study, through a combined experimental and theoretical investigation by density functional theory (DFT) calculations on the incorporation of extrinsic alkali cations (Rb+, K+, Na+, and Li+) in perovskite materials, the size-dependent interstitial occupancy of these cations in the perovskite lattice is unambiguously revealed. Interestingly, DFT calculations predict the increased ion migration barriers in the lattice after the ...
Efficiencies >20% are obtained from the perovskite solar cells (PSCs) employing Cs+ and Rb+ based pe...
Improving the stability of hybrid perovskite solar cells is believed to be the main step toward larg...
Halide alloying in metal halide perovskites is a useful tool for optoelectronic applications requiri...
Recent success in achieving highly stable Rb-containing organolead halide perovskites has indicated ...
Recent success in achieving highly stable Rb-containing organolead halide perovskites has indicated ...
Metal halide perovskite materials have shown versatile functionality for a variety of optoelectronic...
In the past few years, the remarkable energy conversion efficiency of lead-halide-based perovskite s...
Metal halide perovskites (MHPs) are nowadays one of the most studied semiconductors due to their exc...
The operation of halide perovskite optoelectronic devices, including solar cells and LEDs, is strong...
Fast ionic conductors constitute a family of materials exhibiting high values of the ionic conductiv...
The operation of halide perovskite optoelectronic devices, including solar cells and LEDs, is strong...
Efficiencies >20% are obtained from the perovskite solar cells (PSCs) employing Cs+ and Rb+ based pe...
Improving the stability of hybrid perovskite solar cells is believed to be the main step toward larg...
Halide alloying in metal halide perovskites is a useful tool for optoelectronic applications requiri...
Recent success in achieving highly stable Rb-containing organolead halide perovskites has indicated ...
Recent success in achieving highly stable Rb-containing organolead halide perovskites has indicated ...
Metal halide perovskite materials have shown versatile functionality for a variety of optoelectronic...
In the past few years, the remarkable energy conversion efficiency of lead-halide-based perovskite s...
Metal halide perovskites (MHPs) are nowadays one of the most studied semiconductors due to their exc...
The operation of halide perovskite optoelectronic devices, including solar cells and LEDs, is strong...
Fast ionic conductors constitute a family of materials exhibiting high values of the ionic conductiv...
The operation of halide perovskite optoelectronic devices, including solar cells and LEDs, is strong...
Efficiencies >20% are obtained from the perovskite solar cells (PSCs) employing Cs+ and Rb+ based pe...
Improving the stability of hybrid perovskite solar cells is believed to be the main step toward larg...
Halide alloying in metal halide perovskites is a useful tool for optoelectronic applications requiri...