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Pis'ma v Zh. Èksper. Teoret. Fiz., 2012, Volume 96, Issue 6, Pages 407–412 (Mi jetpl3230)  

This article is cited in 3 scientific papers (total in 3 papers)

CONDENSED MATTER

Structure and transport properties of stephanite (Ag$_5$SbS$_4$) according to antimony nuclear quadrupole resonance

A. Yu. Orlovaa, R. R. Gainova, A. V. Dooglava, I. N. Pen'kovb, E. A. Korolevb

a Institute of Physics, Kazan (Volga region) Federal University
b Institute of Geology and Petroleum Technologies, Kazan Federal University

Abstract: Silver sulfo-antimonide Ag$_5$SbS$_4$ (stephanite) has been studied by nuclear quadrupole resonance (NQR) spectroscopy on antimony nuclei. The temperature dependences of the spectroscopic and relaxation parameters have been examined in the range of $4.2$$395$ K. A phase transition at $140$ K and internal motions with an activation energy of $0.29$ eV have been experimentally detected. The nature of the phase transition and diffusion of silver ions has been discussed in view of the reported data.

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English version:
Journal of Experimental and Theoretical Physics Letters, 2012, 96:6, 370–374

Bibliographic databases:

Document Type: Article
Received: 18.07.2012

Citation: A. Yu. Orlova, R. R. Gainov, A. V. Dooglav, I. N. Pen'kov, E. A. Korolev, “Structure and transport properties of stephanite (Ag$_5$SbS$_4$) according to antimony nuclear quadrupole resonance”, Pis'ma v Zh. Èksper. Teoret. Fiz., 96:6 (2012), 407–412; JETP Letters, 96:6 (2012), 370–374

Citation in format AMSBIB
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\paper Structure and transport properties of stephanite (Ag$_5$SbS$_4$) according to antimony nuclear quadrupole resonance
\jour Pis'ma v Zh. \`Eksper. Teoret. Fiz.
\yr 2012
\vol 96
\issue 6
\pages 407--412
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\jour JETP Letters
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\vol 96
\issue 6
\pages 370--374
\crossref{https://doi.org/10.1134/S0021364012180099}
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    Citing articles on Google Scholar: Russian citations, English citations
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    This publication is cited in the following articles:
    1. A. Yu. Orlova, R. R. Gainov, A. V. Dooglav, I. N. Pen'kov, “Electronic structure and indirect spin-spin interactions in bournonite (CuPbSbS3) according to antimony nuclear quadrupole resonance”, JETP Letters, 97:7 (2013), 413–418  mathnet  crossref  crossref  isi  elib  elib
    2. Gainov R.R. Dooglav A.V. Vagizov F.G. Pen'kov I.N. Golovanevskiy V.A. Orlova A.Yu. Evlampiev Il'ya A. Klekovkina V.V. Klingelhoefer G. Ksenofontov V. Mozgova N.N., “Nqr/Nmr and Mossbauer Spectroscopy of Sulfides: Potential and Versatility”, Eur. J. Mineral., 25:4 (2013), 569–578  crossref  isi  elib  scopus
    3. S. K. Wallace, K. L. Svane, W. P. Huhn, T. Zhu, D. B. Mitzi, V. Blum, A. Walsh, “Candidate Photoferroic Absorber Materials For Thin-Film Solar Cells From Naturally Occurring Minerals: Enargite, Stephanite, and Bournonite”, Sustain. Energ. Fuels, 1:6 (2017), 1339–1350  crossref  isi
  •       Pis'ma v Zhurnal ksperimental'noi i Teoreticheskoi Fiziki
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