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Stoichiography in the study of spatial heterogeneity of the chemical composition and structure of thin films and nanostructured systems

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We present the principles of stoichiography and a reference-free stoichiographic differential (separating) dissolution method used to study the composition and structure of thin films and nanostructured systems: HTS films with 123 different compositions, Al–Au–Sn–Co–Mn, Si/SiO2/Ni(Cr)–Cu–Cu2S, Cr–Cu–S, and Cu–S multilayer films, Bi–Ti–O films on Ru/SiO2/Si, Mn1–xZn x S, and ZnS–EuS supports, and also nanostructured manganese ferrite in borate glass matrices, nanodisperse composite sorbents and the Co–Si–Pt–O/Al2O3 catalyst modified by Pt nanoparticles, and oxide catalyst precursor Fe2Co/Al2O3 for the synthesis of carbon nanotubes.

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Correspondence to V. V. Malakhov.

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Original Russian Text © 2017 V. V. Malakhov.

Translated from Zhurnal Strukturnoi Khimii, Vol. 58, No. 8, pp. 1602-1609, November-December, 2017.

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Malakhov, V.V. Stoichiography in the study of spatial heterogeneity of the chemical composition and structure of thin films and nanostructured systems. J Struct Chem 58, 1551–1559 (2017). https://doi.org/10.1134/S002247661708011X

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  • DOI: https://doi.org/10.1134/S002247661708011X

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