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Get Free AccessFerroelectric semiconductors are rare materials with both spontaneous polarizations and visible light absorptions that are promising for designing functional photoferroelectrics, such as optical switches and ferroelectric photovoltaics. The emerging halide perovskites with remarkable semiconducting properties also have the potential of being ferroelectric, yet the evidence of robust ferroelectricity in the typical three-dimensional hybrid halide perovskites has been elusive. Here, we report on the investigation of ferroelectricity in all-inorganic halide perovskites, CsGeX 3 , with bandgaps of 1.6 to 3.3 eV. Their ferroelectricity originates from the lone pair stereochemical activity in Ge (II) that promotes the ion displacement. This gives rise to their spontaneous polarizations of ~10 to 20 μC/cm 2 , evidenced by both ab initio calculations and key experiments including atomic-level ionic displacement vector mapping and ferroelectric hysteresis loop measurement. Furthermore, characteristic ferroelectric domain patterns on the well-defined CsGeBr 3 nanoplates are imaged with both piezo-response force microscopy and nonlinear optical microscopic method.
Ye Zhang, Eric Parsonnet, Abel Fernández, Sinéad M. Griffin, Huaixun Huyan, Chung-Kuan Lin, Lei Teng, Jianbo Jin, Edward S. Barnard, Archana Raja, Piush Behera, Xiaoqing Pan, R. Ramesh, Peidong Yang (2022). Ferroelectricity in a semiconducting all-inorganic halide perovskite. , 8(6), DOI: https://doi.org/10.1126/sciadv.abj5881.
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Type
Article
Year
2022
Authors
14
Datasets
0
Total Files
0
Language
en
DOI
https://doi.org/10.1126/sciadv.abj5881
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