Halide perovskites are a new class of semiconductors showing an incredible set of physical properties wellsuited for a large range of opto-electronic applications. These physical properties can be easily tuned and adapted to the intended application by modifying the composition and the size of the material. Additionally, these materials are solution-processed at low temperature and ambient pressure, and contain earth-abundant elements. However, some important challenges remain: the presence of lead and the stability. In this paper, we present some outlines of these materials in several fields of opto-electronics, i. e. photovoltaics and light-emitting devices, such as LEDs, single-photon sources, lasers, and photonics
Exploring prospective materials for energy production and storage is one of the biggest challenges o...
Exploring prospective materials for energy production and storage is one of the biggest challenges o...
Next-generation displays and lighting technologies require efficient optical sources that combine br...
Halide perovskites are a new class of semiconductors showing an incredible set of physical propertie...
International audienceMetal halide perovskites have recently emerged as one of the most promising cl...
Abstract Lead halide perovskite nanomaterials are among the forefront of developing materials for en...
Over the past few years, lead halide perovskites have emerged as a class of dominant semiconductor m...
The introduction of photovoltaic cells and light emitting diodes has defined this era of technology...
Abstract Advances in metal-halide perovskite semiconductors have significantly influenced light-curr...
Since 2012, when two groups reported for the first time power conversion efficiencies exceeding numb...
Abstract Lead-based halide perovskites have emerged as excellent semiconductors for a broad range of...
Halide perovskites hold great promise for next generation printable optoelectronic devices. Within a...
Exploring prospective materials for energy production and storage is one of the biggest challenges o...
Nanomaterials refer to those with at least one dimension being at the nanoscale (i.e. < 100 nm) s...
Halide perovskites have emerged as a class of most promising and cost-effective semiconductor materi...
Exploring prospective materials for energy production and storage is one of the biggest challenges o...
Exploring prospective materials for energy production and storage is one of the biggest challenges o...
Next-generation displays and lighting technologies require efficient optical sources that combine br...
Halide perovskites are a new class of semiconductors showing an incredible set of physical propertie...
International audienceMetal halide perovskites have recently emerged as one of the most promising cl...
Abstract Lead halide perovskite nanomaterials are among the forefront of developing materials for en...
Over the past few years, lead halide perovskites have emerged as a class of dominant semiconductor m...
The introduction of photovoltaic cells and light emitting diodes has defined this era of technology...
Abstract Advances in metal-halide perovskite semiconductors have significantly influenced light-curr...
Since 2012, when two groups reported for the first time power conversion efficiencies exceeding numb...
Abstract Lead-based halide perovskites have emerged as excellent semiconductors for a broad range of...
Halide perovskites hold great promise for next generation printable optoelectronic devices. Within a...
Exploring prospective materials for energy production and storage is one of the biggest challenges o...
Nanomaterials refer to those with at least one dimension being at the nanoscale (i.e. < 100 nm) s...
Halide perovskites have emerged as a class of most promising and cost-effective semiconductor materi...
Exploring prospective materials for energy production and storage is one of the biggest challenges o...
Exploring prospective materials for energy production and storage is one of the biggest challenges o...
Next-generation displays and lighting technologies require efficient optical sources that combine br...