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  5. Room-Temperature Ferroelectric Epitaxial Nanowire Arrays with Photoluminescence

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Article
en
2024

Room-Temperature Ferroelectric Epitaxial Nanowire Arrays with Photoluminescence

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en
2024
Vol 24 (17)
Vol. 24
DOI: 10.1021/acs.nanolett.4c00453

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Peidong Yang
Peidong Yang

University of California, Berkeley

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Han K. D. Le
Ye Zhang
Piush Behera
+4 more

Abstract

The development of large-scale, high-quality ferroelectric semiconductor nanowire arrays with interesting light-emitting properties can address limitations in traditional wide-bandgap ferroelectrics, thus serving as building blocks for innovative device architectures and next-generation high-density optoelectronics. Here, we investigate the optical properties of ferroelectric CsGeX3 (X = Br, I) halide perovskite nanowires that are epitaxially grown on muscovite mica substrates by vapor phase deposition. Detailed structural characterizations reveal an incommensurate heteroepitaxial relationship with the mica substrate. Furthermore, photoluminescence that can be tuned from yellow-green to red emissions by varying the halide composition demonstrates that these nanowire networks can serve as platforms for future optoelectronic applications. In addition, the room-temperature ferroelectricity and ferroelectric domain structures of these nanowires are characterized using second harmonic generation (SHG) polarimetry. The combination of room-temperature ferroelectricity with photoluminescence in these nanowire arrays unlocks new avenues for the design of novel multifunctional materials.

How to cite this publication

Han K. D. Le, Ye Zhang, Piush Behera, Artūras Vailionis, Amelyn Phang, Rafaela M. Brinn, Peidong Yang (2024). Room-Temperature Ferroelectric Epitaxial Nanowire Arrays with Photoluminescence. , 24(17), DOI: https://doi.org/10.1021/acs.nanolett.4c00453.

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Publication Details

Type

Article

Year

2024

Authors

7

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1021/acs.nanolett.4c00453

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