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Original Articles

Crystal structure and magnetic ordering in magnetoelectric KNiPO4 investigated by means of X-ray and neutron diffraction

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Pages 37-44 | Received 25 Sep 1993, Accepted 01 Nov 1993, Published online: 25 Feb 2011

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A. Janner. (1997) Hans Schmid's research on materials and magnetoelectricity. Ferroelectrics 204:1, pages xxxi-xxxvii.
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Marcos Luján, Jean-Pierre Rivera & Hans Schmid. (1996) Structural studies of KNiPO4 at high temperature. Ferroelectrics 185:1, pages 59-62.
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Marcos Lujan, Frank Kubel & Hans Schmid. (1995) Chemical and X-ray studies of ferroelectric domains in KNiPO4 . Ferroelectrics 172:1, pages 193-199.
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Articles from other publishers (22)

J. Kondek, S. Szczupaczyńska-Zalewska & Michal J. Winiarski. (2022) Magnetic properties of α-KCoPO4 compound with a chiral polar crystal structure. Journal of Magnetism and Magnetic Materials 562, pages 169794.
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Aditi Chiring, Madhulika Mazumder, Swapan K. Pati, Christopher S. Johnson & Premkumar Senguttuvan. (2021) Unraveling the formation mechanism of NaCoPO4 polymorphs. Journal of Solid State Chemistry 293, pages 121766.
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Kawthar Trabelsi, Karim Karoui, Abdelfattah Mahmoud, Jérôme Bodart, Frédéric Boschini & Abdallah Ben Rhaiem. (2020) The dielectric relaxation behavior induced by sodium migration in the Na 2 CoSiO 4 structure within a three-dimensional Co–O–Si framework . RSC Advances 10:46, pages 27456-27473.
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Dongshuai Hou, Xiaoqian Xu, Muhan Wang, Zheng Chen, Jinrui Zhang, Biqin Dong, Jijun Miao & Caiwei Liu. (2020) Nanoscale insights on the interface between passive film of steel and cement hydrate: Diffusion, kinetics and mechanics. Applied Surface Science 514, pages 145898.
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Nadezhda Bolotina, Olga Yakubovich, Larisa Shvanskaya, Olga Dimitrova, Anatoly Volkov & Alexander Vasiliev. (2019) A commensurately modulated crystal structure and the physical properties of a novel polymorph of the caesium manganese phosphate CsMnPO 4 . Acta Crystallographica Section B Structural Science, Crystal Engineering and Materials 75:5, pages 822-829.
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A. Ajmi, M. Chemingui, A. Mahmoud, F. Boschini & A. Ben Rhaiem. (2019) Structural, vibrational spectroscopic, and electrical conduction mechanisms of α-NaCoPO4 compound. Ionics 25:3, pages 1091-1103.
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Matthias Weil. (2019) An unprecedented structural phase transition in struvite-type compounds: dimorphism of KMgAsO 4 (H 2 O) 6 . Zeitschrift für Naturforschung B 74:1, pages 9-14.
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Marwa Enneffati, Bassem Louati, Kamel Guidara, Mohammed Rasheed & Régis Barillé. (2017) Crystal structure characterization and AC electrical conduction behavior of sodium cadmium orthophosphate. Journal of Materials Science: Materials in Electronics 29:1, pages 171-179.
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Marwa Enneffati, Nadia Khadija Maaloul, Bassem Louati, Kamel Guidara & Kamel Khirouni. (2017) Synthesis, vibrational and UV–visible studies of sodium cadmium orthophosphate. Optical and Quantum Electronics 49:10.
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N. Priyadharsini & R. Kalai Selvan. (2017) Nano-sheet-like KNiPO4 as a positive electrode material for aqueous hybrid supercapacitors. Electrochimica Acta 246, pages 963-970.
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Oksana V. Livitska, Nataliia Yu. Strutynska, Igor V. Zatovsky & Nikolay S. Slobodyanik. (2015) The double phosphates M I M II PO 4 ( M I - Na, K; M II - Mg, Mn, Co, Ni, Zn) - synthesis from chloride melts and characterization . Crystal Research and Technology 50:8, pages 626-632.
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Oksana V. Livitska, Nataliya Yu. Strutynska, Igor V. Zatovsky & Nikolay S. Slobodyanik. (2015) Chemical Interaction of Phosphates M<sup>II</sup><sub>2</sub>P<sub>4</sub>O<sub>12 </sub>with Melted M<sup>I</sup>Cl or M<sup>I</sup>NO<sub>3 </sub>(M<sup>I</sup> – Li, Na, K; M<sup>II</sup> – Mg, Co, Ni, Zn). Solid State Phenomena 230, pages 297-302.
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I. V. Korchemkin, I. V. Pet’kov, V. S. Kurazhkovskaya & E. Yu. Borovikova. (2015) Synthesis of sodium nickel phosphate and its crystallographic, spectroscopic, and temperature-controlled X-ray diffraction study. Russian Journal of Inorganic Chemistry 60:3, pages 265-269.
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I.V. Korchemkin, V.I. Pet’kov, A.V. Markin, N.N. Smirnova, A.M. Kovalsky, N.N. Efimov & V.M. Novotortsev. (2014) Thermodynamic properties of caesium–manganese phosphate CsMnPO4. The Journal of Chemical Thermodynamics 78, pages 114-119.
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Gwilherm Nénert, Jerry BettisJr.Jr., Reinhard Kremer, Hamdi Ben Yahia, Clemens Ritter, Etienne Gaudin, Olivier Isnard & Myung-Hwan Whangbo. (2013) Magnetic Properties of the RbMnPO 4 Zeolite-ABW-Type Material: A Frustrated Zigzag Spin Chain . Inorganic Chemistry 52:16, pages 9627-9635.
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Radheshyam Rai, Igor Bdikin, Manuel Almeida Valente & Andrei L. Kholkin. (2010) Ferroelectric and ferromagnetic properties of Gd-doped BiFeO3–BaTiO3 solid solution. Materials Chemistry and Physics 119:3, pages 539-545.
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Jeong Seog Kim, Chae Il Cheon, Hyun-Ju Kang & Pyung Woo Jang. (2007) High temperature properties of multiferroic BiFeO3–DyFeO3–BaTiO3 solid solutions. Journal of the European Ceramic Society 27:13-15, pages 3951-3954.
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Olga V. Yakubovich, Werner Massa & Olga V. Dimitrova. (2005) A New Type of Anionic Framework in Microporous Potassium Iron(II) Phosphate K[Fe(PO 4 )] . Zeitschrift für anorganische und allgemeine Chemie 631:12, pages 2445-2449.
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V. V. Leskovets, M. I. Kurkin, V. V. Nikolaev & E. A. Turov. (2002) High-frequency properties of KNiPO4 in alternating magnetic and electric fields. Physics of the Solid State 44:7, pages 1330-1335.
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Paul F. HenryMark T. WellerRobert W. Hughes. (2000) Nickel Phosphate Based Zeotype, RbNiPO 4 . Inorganic Chemistry 39:24, pages 5420-5421.
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Jędrzej Kondek, Sandra Szczupaczyńska-Zalewska & Michal Winiarski. (2022) Magnetic Properties of a Chiral Compound Α-Kcopo4. SSRN Electronic Journal.
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Jędrzej Kondek, Sandra Szczupaczyńska-Zalewska & Michal Winiarski. (2022) Magnetic Frustration in a Chiral Compound Α-Kcopo4. SSRN Electronic Journal.
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