Melting and crystallization of Sn, Bi and Pb nanoparticles in contact with Al
S. I. Bogatyrenko, S. V. Dukarov, M.M. Kolendovsky, A. P. Kryshtal

TL;DR
This study investigates supercooling and crystallization behaviors of nanosized Bi, Sn, and Pb particles on Al substrates, demonstrating the effectiveness of layered film systems for analyzing supercooling limits in particle-matrix systems with eutectic interactions.
Contribution
It introduces layered film systems as an effective method to study supercooling in nanoparticle-matrix systems with eutectic interactions, providing new insights into crystallization processes.
Findings
Supercooling behavior of Bi, Sn, and Pb nanoparticles on Al was characterized.
Layered film systems effectively reveal supercooling limits in particle-matrix systems.
Results align with and expand upon existing literature data.
Abstract
The results of studies of supercooling upon crystallization value of Bi, Sn and Pb nanosized particles on the Al substrate and between the Al layers have been presented. It has been shown the efficiency of usage of layered film systems for investigation of the limiting supercooling in particle-matrix systems with an eutectic type of interaction between components. The obtained results have been discussed and compared with literature data. ----- Predstavleny rezultaty issledovanij pereohlazhdenij pri kristallizacii nanorazmernyh chastic Bi, Sn i Pb na Al podlozhke i mezhdu sloyami alyuminiya. Pokazana effektivnost ispolzovaniya sloistyh plenochnyh sistem dlya issledovaniya predelnogo pereohlazhdeniya v sistemah chastica-matrica s evtekticheskim tipom vzaimodejstviya mezhdu komponentami. Poluchennye rezultaty obsuzhdeny i sopostavleny s literaturnymi dannymi.
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Taxonomy
Topicsnanoparticles nucleation surface interactions · Coagulation and Flocculation Studies · Thermodynamic and Structural Properties of Metals and Alloys
