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Original Articles

Ferroelectric domains and domain boundaries observed by scanning force microscopy

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Pages 211-218 | Received 26 Mar 1996, Published online: 26 Oct 2011

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Read on this site (10)

I.K. Bdikin, M. Wojtaś, D. Kiselev, D. Isakov & A.L. Kholkin. (2012) Ferroelectric-Paraelectric Phase Transition in Triglycine Sulphate via Piezoresponse Force Microscopy. Ferroelectrics 426:1, pages 215-222.
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N. Nakatani. (2011) Observation of Ferroelectric Domain Structure in TGS. Ferroelectrics 413:1, pages 238-265.
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Makoto Iwata, Fumihiko Itoh, Rintaro Aoyagi, Masaki Maeda & Yoshihiro Ishibashi. (2010) Observation of Cleavage Surface in Tri-Glycine Sulfate by Atomic Force Microscopy. Ferroelectrics 400:1, pages 195-203.
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J. Petzelt & M. Glogarová. (2008) Czech Research in Ferroelectricity: Fifty-Years History and Present. Ferroelectrics 375:1, pages 1-18.
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R.V. Gainutdinov, N.V. Belugina, A.L. Tolstikhina & O.A. Lysova. (2008) Multimode Atomic Force Microscopy of Triglycine Sulfate Crystal Domain Structure. Ferroelectrics 368:1, pages 42-48.
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L.M. Eng, F. Schlaphof, S. Trogisch, A. Roelofs & R. Waser. (2001) Status and future aspects in nanoscale surface inspection of ferroics by scanning probe microscopy. Ferroelectrics 251:1, pages 11-20.
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N. V. Belugina, A. L. Tolstikhina & R. V. Gainutdinov. (2001) About the nature of two-dimensional formations at the polar surface of cleaved triglycine sulfate crystals. Ferroelectrics 249:1, pages 237-255.
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L.M. Eng, M. Bammerlin. Ch. Loppacher, M. Guggisberg. R. Bennewitz, R. Lüthi, E. Meyer. Th. Huser, H. Heinzelmann & H.-J. Güntherodt. (1999) Ferroelectric domain characterisation and manipulation : A challenge for scanning probe microscopy. Ferroelectrics 222:1, pages 153-162.
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Articles from other publishers (29)

Benjamin Kirbus, Christian Godau, Lukas Wehmeier, Henrik Beccard, Elke Beyreuther, Alexander Haußmann & Lukas M. Eng. (2019) Real-Time 3D Imaging of Nanoscale Ferroelectric Domain Wall Dynamics in Lithium Niobate Single Crystals under Electric Stimuli: Implications for Domain-Wall-Based Nanoelectronic Devices. ACS Applied Nano Materials 2:9, pages 5787-5794.
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Benjamin Wolba, Jan Seidel, Claudio Cazorla, Christian Godau, Alexander Haußmann & Lukas M. Eng. (2017) Resistor Network Modeling of Conductive Domain Walls in Lithium Niobate. Advanced Electronic Materials 4:1, pages 1700242.
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Lukas Wehmeier, Thomas Kämpfe, Alexander Haußmann & Lukas M. Eng. (2017) In Situ 3D Observation of the Domain Wall Dynamics in a Triglycine Sulfate Single Crystal upon Ferroelectric Phase Transition. physica status solidi (RRL) - Rapid Research Letters 11:11, pages 1700267.
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Christian Godau, Thomas Kämpfe, Andreas Thiessen, Lukas M. Eng & Alexander Haußmann. (2017) Enhancing the Domain Wall Conductivity in Lithium Niobate Single Crystals. ACS Nano 11:5, pages 4816-4824.
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N. T. Tsou, P. R. Potnis & J. E. Huber. (2011) Classification of laminate domain patterns in ferroelectrics. Physical Review B 83:18.
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N.T. Tsou & J.E. Huber. (2010) Compatible domain structures and the poling of single crystal ferroelectrics. Mechanics of Materials 42:7, pages 740-753.
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R. V. Gaĭnutdinov, N. V. Belugina, A. L. Tolstikhina & O. A. Lysova. (2007) Criterion for identification of ferroelectric domains in TGS crystals from AFM images. Crystallography Reports 52:2, pages 332-337.
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David A. Scrymgeour & Venkatraman Gopalan. (2005) Nanoscale piezoelectric response across a single antiparallel ferroelectric domain wall. Physical Review B 72:2.
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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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D.A. Bonnell & R. Shao. 2005. Scanning Probe Microscopy: Characterization, Nanofabrication and Device Application of Functional Materials. Scanning Probe Microscopy: Characterization, Nanofabrication and Device Application of Functional Materials 77 101 .
A. Gruverman. 2005. Scanning Probe Microscopy: Characterization, Nanofabrication and Device Application of Functional Materials. Scanning Probe Microscopy: Characterization, Nanofabrication and Device Application of Functional Materials 223 249 .
S. V. Kalinin & D. A. Bonnell. 2004. Nanoscale Characterisation of Ferroelectric Materials. Nanoscale Characterisation of Ferroelectric Materials 1 43 .
Sergei V. Kalinin & Dawn A. Bonnell. 2004. Nanoscale Phenomena in Ferroelectric Thin Films. Nanoscale Phenomena in Ferroelectric Thin Films 183 217 .
Dawn A Bonnell & Rui Shao. (2003) Local behavior of complex materials: scanning probes and nano structure. Current Opinion in Solid State and Materials Science 7:2, pages 161-171.
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J Fousek, L.E Cross & J Nosek. (2003) Domain phenomena in single crystalline and ceramic ferroics: unresolved and attractive problems. Microelectronic Engineering 66:1-4, pages 574-583.
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Sergei V. Kalinin, C. Y. Johnson & Dawn A. Bonnell. (2002) Domain polarity and temperature induced potential inversion on the BaTiO3(100) surface. Journal of Applied Physics 91:6, pages 3816-3823.
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V Likodimos, M Labardi, M Allegrini, N Garcia & V.V Osipov. (2001) Surface charge compensation and ferroelectric domain structure of triglycine sulfate revealed by voltage-modulated scanning force microscopy. Surface Science 490:1-2, pages 76-84.
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Sergei V. Kalinin & Dawn A. Bonnell. (2001) Local potential and polarization screening on ferroelectric surfaces. Physical Review B 63:12.
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Albina Y. Borisevich, Sergei V. Kalinin, Dawn A. Bonnell & Peter K. Davies. (2011) Analysis of phase distributions in the Li 2 O–Nb 2 O 5 –TiO 2 system by piezoresponse imaging . Journal of Materials Research 16:2, pages 329-332.
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V. Likodimos, M. Labardi & M. Allegrini. (2000) Kinetics of ferroelectric domains investigated by scanning force microscopy. Physical Review B 61:21, pages 14440-14447.
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Sergei V. Kalinin & Dawn A. Bonnell. (2000) Effect of phase transition on the surface potential of the BaTiO3 (100) surface by variable temperature scanning surface potential microscopy. Journal of Applied Physics 87:8, pages 3950-3957.
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X. K. Orlik, V. Likodimos, L. Pardi, M. Labardi & M. Allegrini. (2000) Scanning force microscopy study of the ferroelectric phase transition in triglycine sulfate. Applied Physics Letters 76:10, pages 1321-1323.
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V. Likodimos, X. K. Orlik, L. Pardi, M. Labardi & M. Allegrini. (2000) Dynamical studies of the ferroelectric domain structure in triglycine sulfate by voltage-modulated scanning force microscopy. Journal of Applied Physics 87:1, pages 443-451.
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Lukas M Eng. (1999) Nanoscale domain engineering and characterization of ferroelectric domains. Nanotechnology 10:4, pages 405-411.
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L. M. Eng, M. Bammerlin, Ch. Loppacher, M. Guggisberg, R. Bennewitz, E. Meyer & H.-J. Güntherodt. (1999) Ferroelectric domains and material contrast down to a 5 nm lateral resolution on uniaxial ferroelectric triglycine sulphate crystals. Surface and Interface Analysis 27:5-6, pages 422-425.
Crossref
L.M Eng, M Bammerlin, Ch Loppacher, M Guggisberg, R Bennewitz, R Lüthi, E Meyer & H.-J Güntherodt. (1999) Surface morphology, chemical contrast, and ferroelectric domains in TGS bulk single crystals differentiated with UHV non-contact force microscopy. Applied Surface Science 140:3-4, pages 253-258.
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L. M. Eng. (2011) Inspection and Manipulation of Ferroelectrics on the Nanometer Scale. MRS Proceedings 574.
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L. M. Eng, H.-J. Güntherodt, G. Rosenman, A. Skliar, M. Oron, M. Katz & D. Eger. (1998) Nondestructive imaging and characterization of ferroelectric domains in periodically poled crystals. Journal of Applied Physics 83:11, pages 5973-5977.
Crossref
T. Abplanalp & P. Gunter. (1998) Imaging of ferroelectric domains with sub micrometer resolution by scanning force microscopy. Imaging of ferroelectric domains with sub micrometer resolution by scanning force microscopy.

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