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Correlation between intrinsic dipole moment and pyroelectric coefficient of Fe-Mg tourmaline

Correlation between intrinsic dipole moment and pyroelectric coefficient of Fe-Mg tourmaline
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摘要 Single-crystal X-ray diffraction structural data of four Fe-Mg tourmalines with different Fe contents from Xinjiang, Sichuan, and Yunnan Provinces, China, were collected at room temperature and-100oC. The intrinsic dipole moments of polyhedra and the total intrinsic dipole moment of the unit cell were calculated. By comparing the intrinsic electric dipole moments of the X, Y, Z, T, and B site polyhedra, it is found that the T site polyhedron makes the greatest contribution to the total intrinsic dipole moment. The pyroelectric coefficients of four Fe-Mg tourmalines were experimentally determined, and the influence of intrinsic dipole moments on their pyroelectric properties was inves-tigated. The experimental results show that, compared with the case at room temperature, the intrinsic dipole moments change with the total Fe content at-100oC in a completely different way. With the decrease of temperature, the total intrinsic dipole moments of tourmaline de-crease. Over the same temperature interval, the pyroelectric coefficients increase with the increase in intrinsic dipole moment. Single-crystal X-ray diffraction structural data of four Fe-Mg tourmalines with different Fe contents from Xinjiang, Sichuan, and Yunnan Provinces, China, were collected at room temperature and-100oC. The intrinsic dipole moments of polyhedra and the total intrinsic dipole moment of the unit cell were calculated. By comparing the intrinsic electric dipole moments of the X, Y, Z, T, and B site polyhedra, it is found that the T site polyhedron makes the greatest contribution to the total intrinsic dipole moment. The pyroelectric coefficients of four Fe-Mg tourmalines were experimentally determined, and the influence of intrinsic dipole moments on their pyroelectric properties was inves-tigated. The experimental results show that, compared with the case at room temperature, the intrinsic dipole moments change with the total Fe content at-100oC in a completely different way. With the decrease of temperature, the total intrinsic dipole moments of tourmaline de-crease. Over the same temperature interval, the pyroelectric coefficients increase with the increase in intrinsic dipole moment.
出处 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2014年第2期105-112,共8页 矿物冶金与材料学报(英文版)
基金 financially supported by the National Natural Science Foundation of China(No.40672031)
关键词 TOURMALINE PYROELECTRICITY dipole moment POLYHEDRA tourmaline pyroelectricity dipole moment polyhedra
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  • 1HAWTHORNE F C. Structural mechanisms for light-element varia?tions in tourmaline[J]. Can Miner, 1996,34: 123-132.
  • 2ANDREAS Ertl,JOHN M Hughes, FRANZ Pertlik, et al. Polyhedron distortions in tourmaline[J]. Can Miner, 2002, 40: 153-162.
  • 3KATE D Hawkins, LAN DR MacKinnon, HELMUT Schneeberger. Influence of chemistry on the pyroelectric effect in tourmaline[J]. Am Miner, 1995,80: 491-501.
  • 4FERDINANDO Bosi, SERGIO Lucchesi, LEONID Reznitskii. Crystal chemistry ofthedravite-chromdravite series[J]. EurJ Miner, 2004, 16: 345-352.
  • 5NAKAMURA T, KUBO T. The tourmaline group crystals reaction with water[J]. Ferroelectrics, 1992, 137: 13-31.
  • 6DONNAY G Structure mechanism ofpyroelectricity in tourmaline[J]. ActaCryst, 1977,A33: 927-932.
  • 7ZHAO Changchun, LIAOLibing, XIA Zhiguo, et al. Temperature- dependent Raman and infrared spectroscopy study oniron-magnesium tourmalines with different Fe content[J]. Vib Spec, 2012, 62: 28-34.
  • 8ADAM Pieczka,JANUSZ Kraczka, Oxidized tounnalines-a combined chemical, XRD, and Mossbauer study[J]. EurJ Miner, 2004, 16: 309-321.
  • 9梁金生,孟军平,朱东彬,丁燕,刘志国.热处理对电气石矿物粉体表面自由能的影响[J].硅酸盐学报,2008,36(2):257-260. 被引量:17
  • 10赵长春,张丹,廖立兵,孙小妮.铁-镁电气石中铁的含量、价态及占位对其固有电偶极矩的影响(英文)[J].硅酸盐学报,2008,36(6):854-857. 被引量:8

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