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A. P. Turygin
Researcher at Ural Federal University
Publications - 57
Citations - 584
A. P. Turygin is an academic researcher from Ural Federal University. The author has contributed to research in topics: Piezoresponse force microscopy & Lithium niobate. The author has an hindex of 11, co-authored 42 publications receiving 414 citations.
Papers
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A comparative study of structural and electrical properties in lead-free BCZT ceramics: Influence of the synthesis method
Indrani Coondoo,Neeraj Panwar,Denis Alikin,Denis Alikin,Igor Bdikin,S. S. Islam,A. P. Turygin,Vladimir Ya. Shur,Andrei L. Kholkin,Andrei L. Kholkin +9 more
TL;DR: In this article, various grain size phenomena were studied in promising lead-free piezoelectric ceramics (Ba0.85Ca0.15) (Zr0.10Ti0.90)O3 fabricated via chemical and conventional oxide methods.
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Dual strain mechanisms in a lead-free morphotropic phase boundary ferroelectric.
Julian Walker,Hugh Simons,Denis Alikin,A. P. Turygin,Vladimir Ya. Shur,Andrei L. Kholkin,Hana Uršič,Andreja Benčan,Barbara Malic,Valanoor Nagarajan,Tadej Rojac +10 more
TL;DR: It is shown that intermediate phases play an important role in the macroscopic strain response, and may have potential to enhance electromechanical properties at polar-to-non-polar MPBs.
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Origin of composition-insensitive electrostrictive coefficient and continuous decrease of domain wall density in (1-x)NaNbO3-xBaTiO3 lead-free ferroelectrics
Xu Lu,Lei Hou,Li Jin,Dawei Wang,Qingyuan Hu,Denis Alikin,A. P. Turygin,Liang Wang,Lin Zhang,Xiaoyong Wei +9 more
TL;DR: In this article, the electrostrictive properties as well as domain morphology of the lead-free (1−x)NaNbO3-xBaTiO3 (NN-xBT) (0.10
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The effect of phase assemblages, grain boundaries and domain structure on the local switching behavior of rare-earth modified bismuth ferrite ceramics
Denis Alikin,A. P. Turygin,Julian Walker,Andreja Benčan,Barbara Malič,Tadej Rojac,Vladimir Ya. Shur,Andrei L. Kholkin,Andrei L. Kholkin +8 more
TL;DR: In this paper, the authors compared the synthesis-structure-property relationship in lead-free piezoceramics and showed that an increase in the anti-polar phase assemblages within the polar matrix leads to notable changes in the local polarization switching.
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Tip-induced domain growth on the non-polar cuts of lithium niobate single-crystals
TL;DR: In this paper, tip-induced polarization reversal on X-and Y-non-polar cuts in a single-crystal of congruent lithium niobate has been studied.