Title: Modeling the Influence of Nb Concentration on the Structure and Ferroelectric Properties of SrBi₂(Ta₁-xNbx)₂O₉ Films
Authors: Semchenko, A.V.
Sidski, V.V.
Nikitjuk, Y.V.
Pilipenko, V.A.
Pyatlitski, A.
Piatlitskaya, T.
Petrokovets, Е.
Семченко, А.В.
Сидский, В.В.
Никитюк, Ю.В.
Пилипенко, В.А.
Keywords: ferroelectric thin films
SrBi₂(Ta₁-xNbx)₂O₉
niobium concentration
perovskite structure
spontaneous polarization
Raman spectroscopy
Landau theory
grain morphology
ferroelectric memory (NvFeRAM)
Issue Date: 2025
Citation: Modeling the Influence of Nb Concentration on the Structure and Ferroelectric Properties of SrBi₂(Ta₁-xNbx)₂O₉ Films / A.V. Semchenko, V.V. Sidski, Y.V. Nikitjuk [et al.] // 9th International Conference on Information, Control, and Communication Technologies. - 2025. - Р. [1-4].
Abstract: This study examines how varying niobium (Nb) concentrations influence the structural and ferroelectric characteristics of SrBi₂(Ta₁₋ₓNbₓ)₂O₉ (SBTN) thin films. Raman spectroscopy analysis indicates notable shifts and alterations in spectral bands at higher Nb levels (x = 0.5), attributed to distortions in the (Ta,Nb)O₆ octahedral units and a decrease in lattice symmetry. These modifications lead to non-linear changes in the perovskite phase content and remanent polarization, with optimal performance observed at x = 0.1–0.2. The Landau-Devonshire model accurately predicts these behaviors, demonstrating that intermediate Nb doping boosts spontaneous polarization and stabilizes the perovskite phase. However, excessive Nb (x > 0.2) reduces perovskite formation and promotes grain coarsening, diminishing ferroelectric response. These findings highlight the potential of tailored Nb doping in optimizing nanograined SBTN films for non-volatile ferroelectric RAM (NvFeRAM) applications.
URI: https://elib.gsu.by/handle123456789/84691
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