Properties and potential optoelectronic applications of lead halide perovskite nanocrystals
Свойства и потенциальные оптоэлектронные применения нанокристаллов галогенидных перовскитов свинца
2017-11-09
SCID: 54.1/9vdmm4fs
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colloidal semiconductor nanocrystalsdefect tolerancelead halide perovskite nanocrystalslight-emitting devicesoptoelectronic applications
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Abstract (AI)
Semiconducting lead halide perovskites (LHPs) have not only become prominent thin-film absorber materials in photovoltaics but have also proven to be disruptive in the field of colloidal semiconductor nanocrystals (NCs). The most important feature of LHP NCs is their so-called defect-tolerance-the apparently benign nature of structural defects, highly abundant in these compounds, with respect to optical and electronic properties. Here, we review the important differences that exist in the chemistry and physics of LHP NCs as compared with more conventional, tetrahedrally bonded, elemental, and binary semiconductor NCs (such as silicon, germanium, cadmium selenide, gallium arsenide, and indium phosphide). We survey the prospects of LHP NCs for optoelectronic applications such as in television displays, light-emitting devices, and solar cells, emphasizing the practical hurdles that remain to be overcome.
Key Findings
1
Lead halide perovskite nanocrystals exhibit important chemical and physical differences from conventional tetrahedrally bonded semiconductor nanocrystals.
2
Lead halide perovskite nanocrystals have become disruptive colloidal semiconductor materials alongside their established role as thin-film photovoltaic absorbers.
3
Potential applications include television displays, light-emitting devices, and solar cells.
4
Practical hurdles remain before lead halide perovskite nanocrystals can be broadly implemented in optoelectronic technologies.
5
Their defining characteristic is defect tolerance: abundant structural defects appear relatively benign for their optical and electronic properties.
Research Object
lead halide perovskite nanocrystals (LHP NCs)
Research Subject
their defect-tolerant chemistry and physics, differences from conventional semiconductor nanocrystals, and prospects and practical challenges for optoelectronic applications
Publication Details
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2017-11-09
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