Solar cells, light emitting diodes, and X‐ray detectors based on perovskite materials often incorporate gold electrodes, either in direct or indirect contact with the perovskite compound. Chemical interactions between active layers and contacts deteriorate the operation and induce degradation, being the identification of the chemical nature of such interfacial structures an open question. Chemical reactivity of gold in contact with the perovskite semiconductor leads to reversible formation of oxidized gold halide species and explains the generation of halide vacancies in the vicinity of the interface. Electrical biasing induces contact reaction and produces modifications of the current level by favoring the ability of perovskite/Au interfac...
The performance of halide perovskite-based electronic and optoelectronic devices is often related to...
International audienceLead-halide perovskite solar cells (PSCs) based on unusual semiconductors made...
Halide ion mobility in metal halide perovskites remains an intriguing phenomenon, influencing their ...
Abstract Metal halide perovskites have drawn substantial interest in optoelectronic devices in the p...
Understanding chemical reactivity of lead halide perovskite materials with contacts is crucial to im...
Chemical reactivity of halide perovskites coupled with a low energy of formation makes it a challeng...
Optoelectronic devices based on metal halide perovskites, including solar cells and light-emitting d...
Chemical reactivity of halide perovskites coupled with a low energy of formation makes it a challeng...
Lead halide perovskitesolar cells have reached power conversionefficiencies during the past few year...
nterfaces between the absorbing perovskite and transporting layers are gaining attention as the key ...
Metal halide perovskites, a class of crystalline semiconductors with unique optical and electronic p...
Metal halide perovskite single crystals are being explored as functional materials for a variety of ...
Rapid improvement in photoconversion efficiency (PCE) of solution processable organometallic hybrid ...
Lead halide perovskites suffer from uncontrolled ion migration and the interactions at the external ...
The performance of halide perovskite-based electronic and optoelectronic devices is often related to...
International audienceLead-halide perovskite solar cells (PSCs) based on unusual semiconductors made...
Halide ion mobility in metal halide perovskites remains an intriguing phenomenon, influencing their ...
Abstract Metal halide perovskites have drawn substantial interest in optoelectronic devices in the p...
Understanding chemical reactivity of lead halide perovskite materials with contacts is crucial to im...
Chemical reactivity of halide perovskites coupled with a low energy of formation makes it a challeng...
Optoelectronic devices based on metal halide perovskites, including solar cells and light-emitting d...
Chemical reactivity of halide perovskites coupled with a low energy of formation makes it a challeng...
Lead halide perovskitesolar cells have reached power conversionefficiencies during the past few year...
nterfaces between the absorbing perovskite and transporting layers are gaining attention as the key ...
Metal halide perovskites, a class of crystalline semiconductors with unique optical and electronic p...
Metal halide perovskite single crystals are being explored as functional materials for a variety of ...
Rapid improvement in photoconversion efficiency (PCE) of solution processable organometallic hybrid ...
Lead halide perovskites suffer from uncontrolled ion migration and the interactions at the external ...
The performance of halide perovskite-based electronic and optoelectronic devices is often related to...
International audienceLead-halide perovskite solar cells (PSCs) based on unusual semiconductors made...
Halide ion mobility in metal halide perovskites remains an intriguing phenomenon, influencing their ...