Atypical phase-change alloy Ga2Te3: atomic structure, incipient nanotectonic nuclei, and multilevel writing
Maxim Khomenko
2
,
Chris J. Benmore
3
,
Sergei Bereznev
4
,
Anton Sokolov
2, 5
,
D. Fontanari
5
,
Daniele Fontanari
5
,
Aleksei Kiselev
2
,
Andrey Lotin
2
,
Eugene Bychkov
2, 5
2
Тип публикации: Journal Article
Дата публикации: 2021-11-05
scimago Q1
wos Q1
БС1
SJR: 1.220
CiteScore: 9.3
Impact factor: 5.1
ISSN: 20507526, 20507534
Materials Chemistry
General Chemistry
Краткое описание
Emerging brain-inspired computing, including artificial optical synapses, photonic tensor cores, neuromorphic networks, etc., needs phase-change materials (PCMs) of the next generation with lower energy consumption and a wider temperature range for reliable long-term operation. Gallium tellurides with higher melting and crystallization temperatures appear to be promising candidates and enable achieving the necessary requirements. Using high energy X-ray diffraction and Raman spectroscopy supported by first-principles simulations, we show that vitreous g-Ga2Te3 films essentially have a tetrahedral local structure and sp3 hybridization, similar to those in the stable fcc Ga2Te3 polymorph and in contrast to a vast majority of typical PCMs. Nevertheless, optical pump–probe laser experiments revealed high-contrast, fast and reversible multilevel SET-RESET transitions raising a question related to the phase change mechanism. A recently observed nanotectonic compression in bulk glassy Ga–Te alloys seems to be responsible for the PCM performance. Incipient nanotectonic nuclei, reminiscent of monoclinic high-pressure HP-Te II and rhombohedral HP-Ga2Te3, are present as minorities (2–4%) in g-Ga2Te3 but are suggested to grow dramatically with increasing temperature while interacting with appropriate laser pulses. This leads to co-crystallization of HP-polymorphs amplified by a high internal local pressure reaching 4–8 GPa. The metallic HP-forms provide an increasing optical and electrical contrast, favorable for reliable PCM operations, and higher energy efficiency.
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Tverjanovich A. S. et al. Atypical phase-change alloy Ga2Te3: atomic structure, incipient nanotectonic nuclei, and multilevel writing // Journal of Materials Chemistry C. 2021. Vol. 9. No. 47. pp. 17019-17032.
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Tverjanovich A. S., Khomenko M., Benmore C. J., Bereznev S., Sokolov A., Fontanari D., Fontanari D., Kiselev A., Lotin A., Bychkov E. Atypical phase-change alloy Ga2Te3: atomic structure, incipient nanotectonic nuclei, and multilevel writing // Journal of Materials Chemistry C. 2021. Vol. 9. No. 47. pp. 17019-17032.
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TY - JOUR
DO - 10.1039/D1TC03850H
UR - https://xlink.rsc.org/?DOI=D1TC03850H
TI - Atypical phase-change alloy Ga2Te3: atomic structure, incipient nanotectonic nuclei, and multilevel writing
T2 - Journal of Materials Chemistry C
AU - Tverjanovich, Andrey S.
AU - Khomenko, Maxim
AU - Benmore, Chris J.
AU - Bereznev, Sergei
AU - Sokolov, Anton
AU - Fontanari, D.
AU - Fontanari, Daniele
AU - Kiselev, Aleksei
AU - Lotin, Andrey
AU - Bychkov, Eugene
PY - 2021
DA - 2021/11/05
PB - Royal Society of Chemistry (RSC)
SP - 17019-17032
IS - 47
VL - 9
SN - 2050-7526
SN - 2050-7534
ER -
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@article{2021_Tverjanovich,
author = {Andrey S. Tverjanovich and Maxim Khomenko and Chris J. Benmore and Sergei Bereznev and Anton Sokolov and D. Fontanari and Daniele Fontanari and Aleksei Kiselev and Andrey Lotin and Eugene Bychkov},
title = {Atypical phase-change alloy Ga2Te3: atomic structure, incipient nanotectonic nuclei, and multilevel writing},
journal = {Journal of Materials Chemistry C},
year = {2021},
volume = {9},
publisher = {Royal Society of Chemistry (RSC)},
month = {nov},
url = {https://xlink.rsc.org/?DOI=D1TC03850H},
number = {47},
pages = {17019--17032},
doi = {10.1039/D1TC03850H}
}
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MLA
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Tverjanovich, Andrey S., et al. “Atypical phase-change alloy Ga2Te3: atomic structure, incipient nanotectonic nuclei, and multilevel writing.” Journal of Materials Chemistry C, vol. 9, no. 47, Nov. 2021, pp. 17019-17032. https://xlink.rsc.org/?DOI=D1TC03850H.
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