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A. Observation techniques: 1. Electron microscopy

Domain structure of ferroelectrics observed in the scanning electron microscope

Pages 47-57 | Received 25 Mar 1989, Published online: 10 Feb 2011

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D. K. Kuznetsov, D. S. Chezganov, E. A. Mingaliev, M. S. Kosobokov & V. Ya. Shur. (2016) Visualization of nanodomain structures in lithium niobate and lithium tantalate crystals by scanning electron microscopy. Ferroelectrics 503:1, pages 60-67.
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N. Nakatani. (2011) Observation of Ferroelectric Domain Structure in TGS. Ferroelectrics 413:1, pages 238-265.
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Shi-Ning Zhu, Yong-Yuan Zhu, Yan-Qing Lu & Nai-Ben Ming. (2000) Invited review. Phase Transitions 72:4, pages 239-298.
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Wenwu Cao & Shining Zhu. (1999) Observation of ferroelectric domains in LiTaO3 . Ferroelectrics 226:1, pages 27-35.
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A.A. Sogr & I.B. Kopylova. (1997) Observation of the domain structure of ferroelectrics with the scanning electron microscope. Ferroelectrics 191:1, pages 193-198.
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A. Skliar, G. Rosenman, Y. Lereah, N. Angert, M. Tseitlin & M. Roth. (1997) Sem studies of domains in KTiOPO4 crystals. Ferroelectrics 191:1, pages 187-192.
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Articles from other publishers (15)

K. A. Hunnestad, E. D. Roede, A. T. J. van Helvoort & D. Meier. (2020) Characterization of ferroelectric domain walls by scanning electron microscopy. Journal of Applied Physics 128:19.
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Donald M. Evans, Vincent Garcia, Dennis Meier & Manuel Bibes. (2020) Domains and domain walls in multiferroics. Physical Sciences Reviews 5:9.
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Hoda Kianirad, Fredrik Laurell & Carlota Canalias. (2019) Domain wall motion in stoichiometric LiTaO3 induced by low-energy electron beam. Applied Physics Letters 115:5.
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L. S. Kokhanchik. (2018) Potential Images of Ferroelectric Domain Structures Formed by Electron Beam in Lithium Niobate Crystals. Physics of the Solid State 60:9, pages 1778-1785.
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A. I. Ivanova, R. M. Grechishkin, N. N. Bolshakova & V. A. Belyakov. (2015) Temperature observation of the evolution of the domain structure of triglycine sulphate by SEM. Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques 9:5, pages 908-912.
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Heng Wu, Lei Li, Li-Zhi Liang, Shuang Liang, Ying-Ying Zhu & Xin-Hua Zhu. (2015) Recent progress on the structural characterizations of domain structures in ferroic and multiferroic perovskite oxides: A review. Journal of the European Ceramic Society 35:2, pages 411-441.
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Ying Wang, Weijin Chen, Biao Wang & Yue Zheng. (2014) Ultrathin Ferroelectric Films: Growth, Characterization, Physics and Applications. Materials 7:9, pages 6377-6485.
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Daniel Grüner & Zhijian Shen. (2009) Direct Scanning Electron Microscopy Imaging of Ferroelectric Domains After Ion Milling. Journal of the American Ceramic Society 93:1, pages 48-50.
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S. Krishnan, C. Justin Raj, S. Dinakaran, R. Uthrakumar, R. Robert & S. Jerome Das. (2008) Optical, thermal, dielectric and ferroelectric behaviour of sodium acid phthalate (SAP) single crystals. Journal of Physics and Chemistry of Solids 69:11, pages 2883-2887.
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N. Nakatani. 2006. Organic crystals, liquid crystals and polymers. Organic crystals, liquid crystals and polymers 1 57 .
E. Soergel. (2005) Visualization of ferroelectric domains in bulk single crystals. Applied Physics B 81:6, pages 729-751.
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Sergei V. Kalinin, Rui Shao & Dawn A. Bonnell. (2005) Local Phenomena in Oxides by Advanced Scanning Probe Microscopy. Journal of the American Ceramic Society 88:5, pages 1077-1098.
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M. Adachi, Y. Akishige, T. Asahi, K. Deguchi, K. Gesi, K. Hasebe, T. Hikita, T. Ikeda, Y. Iwata, M. Komukae, T. Mitsui, E. Nakamura, N. Nakatani, M. Okuyama, T. Osaka, A. Sakai, E. Sawaguchi, Y. Shiozaki, T. Takenaka, K. Toyoda, T. Tsukamoto & T. Yagi. 2002. Oxides. Oxides 1 26 .
Shining Zhu & Wenwu Cao. (1997) Direct Observation of Ferroelectric Domains in LiTa Using Environmental Scanning Electron Microscopy . Physical Review Letters 79:13, pages 2558-2561.
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G. Rosenman, A. Skliar, I. Lareah, N. Angert, M. Tseitlin & M. Roth. (1996) Observation of ferroelectric domain structures by secondary-electron microscopy in as-grown KTiOP crystals . Physical Review B 54:9, pages 6222-6226.
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