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Section VI: Origin of ferroeletricity and hydrogen bond systems

Origin of ferroelectricity in SbSI

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Pages 37-45 | Received 24 Mar 1998, Published online: 09 Mar 2011

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A. Audzijonis & R. Sereika. (2014) On the Heat Capacities of SbSI and SbSBr. Ferroelectrics Letters Section 41:1-3, pages 51-55.
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A. Audzijonis & R. Sereika. (2014) The thermodynamic functions of ferroelectric and paraelectric SbSI. Phase Transitions 87:5, pages 509-514.
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A. Audzijonis, L. Žigas, A. Kvedaravičius & R. Žaltauskas. (2010) The nature of anharmonicity and phase transition in SbSBr crystal. Phase Transitions 83:1, pages 64-75.
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A. Audzijonis, L. Žigas, R. Žaltauskas, R. Sereika & A. Pauliukas. (2008) Origin of the Optical Anomalies Near the Ferroelectric Phase Transition in SbSI and SbSBr Crystals. Ferroelectrics Letters Section 35:3-4, pages 51-61.
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Articles from other publishers (25)

Tahsin Özer. (2023) Investigation of pressure dependence of anisotropy and elastic modulus of SbSI compound in ferroelectric phase by Ab initio method. Materials Science and Engineering: B 297, pages 116787.
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Fumin Zhang, Weizhen Chen, Yungeng Zhang & Huabing Yin. (2023) 1D group V–VI–VII ternary nanowires: moderate band gaps, easy to exfoliate from bulk, and unexpected ferroelectricity. Physical Chemistry Chemical Physics 25:8, pages 6112-6120.
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Romakanta Bhattarai, Kai Ni & Xiao Shen. (2022) Ferroelectric 2D antimony oxides with wide bandgaps. Journal of Materials Chemistry C 10:46, pages 17658-17664.
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Mark E. Ziffer, Lucas Huber, Feifan Wang, Victoria A. Posey, Jake C. Russell, Taketo Handa, Xavier Roy & X.-Y. Zhu. (2022) Charge carrier coupling to the soft phonon mode in a ferroelectric semiconductor. Physical Review Materials 6:9.
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Shujuan Jiang, Siyuan Liu, Yi Wang, Weizhen Chen, Huabing Yin, Bing Wang, Chang Liu, Zhenzhen Feng & Guang-Ping Zheng. (2021) Ferroelectricity in novel one-dimensional P42-InSeI nanowires. Results in Physics 31, pages 104960.
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Tahsin Özer. (2021) Investigation of pressure dependence of mechanical properties of SbSI compound in paraelectric phase by Ab Initio method. Computational Condensed Matter 28, pages e00568.
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Dawid Przyczyna, Maciej Suchecki, Andrew Adamatzky & Konrad Szaciłowski. (2021) Towards Embedded Computation with Building Materials. Materials 14:7, pages 1724.
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Bao Xiao, Mengqin Zhu, Leilei Ji, Bin-Bin Zhang, Jiangpeng Dong, Jingyi Yu, Qihao Sun, Wanqi Jie & Yadong Xu. (2019) Centimeter size BiSeI crystal grown by physical vapor transport method. Journal of Crystal Growth 517, pages 7-11.
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Tahsin Ozer & Suleyman Cabuk. (2018) Ab initio study of the lattice dynamical and thermodynamic properties of SbXI (X= S, Se, Te) compounds. Computational Condensed Matter 16, pages e00320.
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Yiping Wang, Yang Hu, Zhizhong Chen, Yuwei Guo, Dong Wang, Esther A. Wertz & Jian Shi. (2018) Effect of strain on the Curie temperature and band structure of low-dimensional SbSI. Applied Physics Letters 112:18.
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Tahsin Ozer & Suleyman Cabuk. (2018) First-principles study of the structural, elastic and electronic properties of SbXI (X=S, Se, Te) crystals. Journal of Molecular Modeling 24:3.
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Leonardas Žigas, Algirdas Audzijonis & Jonas Grigas. (2017) Origin of weak ferroelectricity in semiconductive Sb2S3 crystal. Journal of Physics and Chemistry of Solids 101, pages 5-9.
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Longyue Liang, Xueliang Kang, Yuanhua Sang & Hong Liu. (2016) One‐Dimensional Ferroelectric Nanostructures: Synthesis, Properties, and Applications. Advanced Science 3:7, pages 1500358.
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Danila Amoroso & Silvia Picozzi. (2016) Ab initio approach to structural, electronic, and ferroelectric properties of antimony sulphoiodide . Physical Review B 93:21.
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A. Audzijonis, L. Žigas, R. Žaltauskas & R. Sereika. (2015) Origin of ferroelectric phase transition in SbOxS1−xI mixed crystals. International Journal of Modern Physics B 29:23, pages 1550167.
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A. Audzijonis, R. Sereika, L. Žigas & R. Žaltauskas. (2015) Dielectric and electrical properties of SbSI and SbSeI single crystals in the region of antiferroelectric phase transition. Journal of Physics and Chemistry of Solids 83, pages 117-120.
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Justin Varghese, Colm O’Regan, Nitin Deepak, Roger W. Whatmore & Justin D. Holmes. (2012) Surface Roughness Assisted Growth of Vertically Oriented Ferroelectric SbSI Nanorods. Chemistry of Materials 24:16, pages 3279-3284.
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A. Audzijonis, G. Gaigalas, L. Žigas, R. Sereika, R. Žaltauskas, D. Balnionis & A. Rėza. (2009) Electronic structure and optical properties of BiSeI crystal. physica status solidi (b) 246:7, pages 1702-1708.
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Algirdas Audzijonis, Raimundas Sereika & Raimundas Žaltauskas. (2008) Antiferroelectric phase transition in SbSI and SbSeI crystals. Solid State Communications 147:3-4, pages 88-89.
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Algirdas Audzijonis, Gediminas Gaigalas, Leonardas Žigas, Audrius Pauliukas, Bronislovas Šalkus, Raimundas Žaltauskas, Antanas Kvedaravičius, Aurimas Čerškus & Jurgis Narušis. (2008) Investigation of the electronic structure of the SbSeBr cluster. Open Physics 6:3.
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A. Audzijonis, G. Gaigalas, L. Žigas, A. Pauliukas, R. Žaltauskas, A. Kvedaravičius & A. Čerškus. (2008) Investigation of the electronic structure of the BiSBr and BiSeBr clusters by density functional method. Journal of Electron Spectroscopy and Related Phenomena 162:1, pages 13-18.
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A. Audzijonis, G. Gaigalas, L. Žigas, A. Pauliukas, R. Žaltauskas, A. Čerškus, J. Narušis & A. Kvedaravičius. (2007) Electronic structure of the BiSI cluster. Physica B: Condensed Matter 391:1, pages 22-27.
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Algirdas Audzijonis, Gediminas Gaigalas, Leonardas Žigas, Audrius Pauliukas, Raimundas Žaltauskas, Aurimas Čerškus & Jurgis Narusis. (2005) Theoretical investigation of the electronic structure of a ferroelectric SbSI cluster at a phase transition. Open Physics 3:3.
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J. Grigas, A. Kajokas, A. Audzijonis & L. Žigas. (2001) Peculiarities and properties of SbSI electroceramics. Journal of the European Ceramic Society 21:10-11, pages 1337-1340.
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Shujuan Jiang, Siyuan Liu, Yi Wang, Weizhen Chen, Huabing Yin, Bing Wang, Chang Liu, Zhenzhen Feng & Guang-Ping Zheng. (2021) Ferroelectricity in Novel One-Dimensional P42-InseI Nanowire. SSRN Electronic Journal.
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