Abstract

Mathematical chemistry plays a vital role in investigating the metal-insulator transition Superlattice (GST-SL) of strongly correlated 3 D electrons due to quantum confinement. The development of epitaxial GST-SL thin films with the design of heterogenous openings is of extraordinary interest due to their applications. The thin-film declaration and the construction of exceptionally arranged amalgam accumulates are crucial for phase transformation application in non-erratic retentiveness. Softening and crystalline elements of the multi-part GST composite have been explored. This paper determines some topological properties, such as degree-based topological descriptors and their entropy measures. More precisely, we analyzed the entropy and the heat of the formation of single crystals, monolayers, and various layers of Ge–Sb–Te.

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