Quasi-two-dimensional perovskites have emerged as a new material platform for optoelectronics on account of its intrinsic stability. A major bottleneck to device performance is the high charge injection barrier caused by organic molecular layers on its basal plane, thus the best performing device currently relies on edge contact. Herein, by leveraging on van der Waals coupling and energy level matching between two-dimensional Ruddlesden-Popper perovskite and graphene, we show that the plane-contacted perovskite and graphene interface presents a lower barrier than gold for charge injection. Electron tunneling across the interface occurs via a gate-tunable, direct tunneling-to-field emission mechanism with increasing bias, and photoinduced ch...
The continued miniaturization of the silicon-based electronics has been the core of the information ...
Understanding interfacial charge transfer processes such as trap-mediated recombination and injectio...
International audienceUnderstanding and controlling charge and energy flow in state-of-the-art semic...
Quasi-two-dimensional perovskites have emerged as a new material platform for optoelectronics on acc...
Halide perovskites and van der Waals (vdW) heterostructures are both of current interest owing to th...
Developing optoelectronic devices with increased efficiency and novel functionality requires an unde...
With the isolation and characterisation of graphene in 2004 there came a revolution in the field of ...
Graphene, since its discovery in 2004, has stimulated considerable interest in two- dimensional laye...
Perovskite oxides have provided a wide variety of exotic functionalities based on their unique physi...
International audienceUnderstanding and controlling charge and energy flow in state-of-the-art semic...
Photocarrier generation in a material, transportation to the material surface, and collection at the...
State-of-the-art quantum-well-based devices such as photovoltaics, photodetectors, and light-emissio...
Vertical integration of van der Waals (vdW) materials into heterostructures with atomic precision is...
Stable all-inorganic CsPbX3 perovskite nanocrystals (PNCs) with high optical yield can be used in co...
National audienceThe presentation will focus on the interplay between structural, interfacial and op...
The continued miniaturization of the silicon-based electronics has been the core of the information ...
Understanding interfacial charge transfer processes such as trap-mediated recombination and injectio...
International audienceUnderstanding and controlling charge and energy flow in state-of-the-art semic...
Quasi-two-dimensional perovskites have emerged as a new material platform for optoelectronics on acc...
Halide perovskites and van der Waals (vdW) heterostructures are both of current interest owing to th...
Developing optoelectronic devices with increased efficiency and novel functionality requires an unde...
With the isolation and characterisation of graphene in 2004 there came a revolution in the field of ...
Graphene, since its discovery in 2004, has stimulated considerable interest in two- dimensional laye...
Perovskite oxides have provided a wide variety of exotic functionalities based on their unique physi...
International audienceUnderstanding and controlling charge and energy flow in state-of-the-art semic...
Photocarrier generation in a material, transportation to the material surface, and collection at the...
State-of-the-art quantum-well-based devices such as photovoltaics, photodetectors, and light-emissio...
Vertical integration of van der Waals (vdW) materials into heterostructures with atomic precision is...
Stable all-inorganic CsPbX3 perovskite nanocrystals (PNCs) with high optical yield can be used in co...
National audienceThe presentation will focus on the interplay between structural, interfacial and op...
The continued miniaturization of the silicon-based electronics has been the core of the information ...
Understanding interfacial charge transfer processes such as trap-mediated recombination and injectio...
International audienceUnderstanding and controlling charge and energy flow in state-of-the-art semic...