The effect of dimensionality reduction on the crystallization kinetics of phase change materials is relevant for the operation of ultrascale memory devices. Therefore, the crystallization of amorphous nanoparticles (NPs) of the prototypical phase change compounds, GeTe and Ge2Sb2Te5, has been addressed by several experimental works in recent years. In this work, we performed molecular dynamics simulations of the crystallization process of amorphous GeTe NPs with diameters in the range 3-6 nm (512-4096 atoms) by exploiting a machine-learned interatomic potential. We saw a few crystal nucleation events in the larger NPs but no crystallization in the smallest NP, 3 nm in diameter, in simulations lasting up to 80 ns in the temperature range 500-750 K. The analysis of the crystallization kinetics suggests that the nucleation rate per volume decreases with the NP size to an extent that prevents us from seeing crystallization in the smallest NP on our simulation time scale. This result is consistent with the large increase in crystallization temperature observed experimentally for NPs with diameters shorter than 3.5 nm.

Acharya, D., Abou El Kheir, O., Perego, S., Campi, D., Bernasconi, M. (2024). Atomistic Simulations of the Crystallization of Amorphous GeTe Nanoparticles. JOURNAL OF PHYSICAL CHEMISTRY. C, 128(45), 19380-19391 [10.1021/acs.jpcc.4c05157].

Atomistic Simulations of the Crystallization of Amorphous GeTe Nanoparticles

Acharya D.;Abou El Kheir O.;Perego S.;Campi D.;Bernasconi M.
2024

Abstract

The effect of dimensionality reduction on the crystallization kinetics of phase change materials is relevant for the operation of ultrascale memory devices. Therefore, the crystallization of amorphous nanoparticles (NPs) of the prototypical phase change compounds, GeTe and Ge2Sb2Te5, has been addressed by several experimental works in recent years. In this work, we performed molecular dynamics simulations of the crystallization process of amorphous GeTe NPs with diameters in the range 3-6 nm (512-4096 atoms) by exploiting a machine-learned interatomic potential. We saw a few crystal nucleation events in the larger NPs but no crystallization in the smallest NP, 3 nm in diameter, in simulations lasting up to 80 ns in the temperature range 500-750 K. The analysis of the crystallization kinetics suggests that the nucleation rate per volume decreases with the NP size to an extent that prevents us from seeing crystallization in the smallest NP on our simulation time scale. This result is consistent with the large increase in crystallization temperature observed experimentally for NPs with diameters shorter than 3.5 nm.
Articolo in rivista - Articolo scientifico
Amorphous materials; Crystallization kinetics; Nanoclay; Semiconducting germanium compounds; Tellurium compounds
English
1-nov-2024
2024
128
45
19380
19391
none
Acharya, D., Abou El Kheir, O., Perego, S., Campi, D., Bernasconi, M. (2024). Atomistic Simulations of the Crystallization of Amorphous GeTe Nanoparticles. JOURNAL OF PHYSICAL CHEMISTRY. C, 128(45), 19380-19391 [10.1021/acs.jpcc.4c05157].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/551022
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