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Section ix: Spectroscopic studies and lattice dynamics

Raman scattering study of the ferroelectric phase transition in GPI and DGPI single crystals

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Pages 125-131 | Received 12 Jul 1999, Published online: 26 Oct 2011

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Toshio Kikuta, Toshinari Yamazaki & Noriyuki Nakatani. (2007) Dielectric Dispersion around the Ferroelectric Phase Transition in Partially Deuterated Glycine Phosphite. Ferroelectrics 355:1, pages 204-210.
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Jannatul Nayeem, Toshio Kikuta, Noriyuki Nakatani, Fumihiko Matsui, Sakura-Nishino Takeda, Ken Hattori & Hiroshi Daimon. (2006) Ferroelectric Phase Transition Character of Glycine Phosphite. Ferroelectrics 332:1, pages 13-19.
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J. Agostinho Moreira, A. Almeida, M. R. Chaves, M. L. Santos, N. J. Muga, A. M. Costa & A. Klöpperpieper. (2005) Ferroelectric Phase in Glycinium Phosphite Studied by Raman Scattering. Ferroelectrics 320:1, pages 83-89.
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Articles from other publishers (6)

Stanisław K. Hoffmann & Janina Goslar. (2018) Anisotropy of the electron spin–lattice relaxation. PO32− radical in glycinium phosphite gly·H3PO3 crystal. Journal of Magnetic Resonance 294, pages 93-100.
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I.R. Zachek, Ya. Shchur, R.R. Levitskii & A.S. Vdovych. (2017) Thermodynamic properties of ferroelectric NH 3 CH 2 COOH·H 2 PO 3 crystal. Physica B: Condensed Matter 520, pages 164-173.
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Yaroslav Shchur & Andriy V. Kityk. (2015) Lattice dynamics study of the ferroelectric glycinium hydrogenphosphite (GPI) crystal. physica status solidi (b) 252:3, pages 476-483.
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J. Agostinho Moreira, A. Almeida, L. G. Vieira, J. L. Ribeiro, M. R. Chaves, M. L. Santos & A. Klöpperpieper. (2005) Coupling between proton pseudo-spins and normal modes in ferroelectric glycinium phosphite. Physical Review B 72:9.
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M. Śledź & J. Baran. (2004) Structural investigations of the ferroelectric glycinium hydrogenphosphite (GPI) crystal and its deuterated analogue (DGPI). ll: Polarised vibrational studies at room temperature. Journal of Molecular Structure 706:1-3, pages 15-48.
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J. Baran, K. Łukaszewicz, A. Pietraszko & M. Śledź. (2002) Structural investigations of the ferroelectric glycinium hydrogenphosphite (GPI) and its deuterated analogue (DGPI). Journal of Molecular Structure 611:1-3, pages 155-168.
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