• Journal of the Chinese Ceramic Society
  • Vol. 52, Issue 10, 3192 (2024)
ZHOU Lin1, ZHANG Wei2, ZHOU Lei3, GUO Ming1,4..., DONG Faqin1,*, KOTOVA Elena Leonidovna5 and KOTOV Leonid Nafanailovichd6|Show fewer author(s)
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • 3[in Chinese]
  • 4[in Chinese]
  • 5Mining Museum, St. Petersburg Mining University, St Petersburg 199106,Russia
  • 6Department of Radiophysics and Electronics, Syktyvkar State University, Syktyvkar 167001, Russia
  • show less
    DOI: 10.14062/j.issn.0454-5648.20240159 Cite this Article
    ZHOU Lin, ZHANG Wei, ZHOU Lei, GUO Ming, DONG Faqin, KOTOVA Elena Leonidovna, KOTOV Leonid Nafanailovichd. Structure–Function Relationship of Fe–Mg Tourmaline Dominated by Positive Ion in Y Site[J]. Journal of the Chinese Ceramic Society, 2024, 52(10): 3192 Copy Citation Text show less
    References

    [1] BOSI F. Octahedrally coordinated vacancies in tourmaline: A theoretical approach[J]. Mineral Mag, 2010, 74(6): 1037–1044.

    [2] BERRYMAN E J, WUNDER B, ERTL A, et al. Influence of the X-site composition on tourmaline’s crystal structure: Investigation of synthetic K-dravite, dravite, oxy-uvite, and magnesio-foitite using SREF and Raman spectroscopy[J]. Phys Chem Miner, 2016, 43(2):83–102.

    [3] V.V. HINSBERG, D. HENRY, and H. MARSCHALL. Tourmaline: An ideal indicator of its host environment[J]. Elements, 2010, 49: 1.

    [4] HENRY D J, DUTROW B L. Tourmaline studies through time:Contributions to scientific advancements[J]. J Geosci-czech, 2018, 63:77–98.

    [5] BOSI F, LUCCHESI S. Crystal chemical relationships in the tourmaline group: Structural constraints on chemical variability[J]. Am Mineral, 2015, 92(7): 1054–1063.

    [6] CHANDRA S P, JüRGEN S. Elastic and piezoelectric constants of tourmaline single crystals at non-ambient temperatures determined by resonant ultrasound spectroscopy[J]. J Appl Phys, 2012, 111(1): 13516.

    [7] HAWTHORNE F C, DIRLAM D M. Tourmaline the indicator mineral:From atomic arrangement to Viking navigation[J]. Elements, 2011,7(5): 307–312.

    [8] HATERT F, BURKE E. The IMA-CNMNC dominant-constituent rule revisited and extended[J]. Can Mineral, 2008, 46(3): 717–728.

    [9] HENRY D J, NOVáK M, HAWTHORNE F C, et al. Nomenclature of the tourmaline-supergroup minerals[J]. Am Mineral, 2011, 96(5–6):895–913.

    [10] J. LI and S. TABASSUM. Synergism of uncoupler dicoumarin and nonmetallic mineral tourmaline for the sewage sludge treatment process: Reducing sludge generation[J]. Clean Eng Technol, 2020, 1:100013.

    [11] TZENG J H, WENG C H, YEN L T, et al. Inactivation of pathogens by visible light photocatalysis with nitrogen-doped TiO2 and tourmalinenitrogen Co-doped TiO2[J]. Sep Purif Technol, 2021, 274: 118979.

    [12] MAO H W, MA P B, JIANG G M. Filtration property of monofilament core–shell mesh fabric treated via tourmaline hot coating[J]. Autex Res J, 2018, 19(2): 127–133.

    [13] NESSE W D. Introduction to mineralogy[M]. New York: Oxford University Press, 2000.

    [14] LANG S B. Pyroelectricity: From ancient curiosity to modern imaging tool[J]. Phys Today, 2005, 58(8): 31–36.

    [15] LANG S B, MUENSIT S. Review of some lesser-known applications of piezoelectric and pyroelectric polymers[J]. Appl Phys A Mater Sci Process, 2006, 85(2): 125–134.

    [16] T. KUBO. Engineering application of solid state physics. Interface activity of water given rise to by tourmaline[J]. Solid State Phys., 1989,24: 303-313.

    [19] DIETRICH R V. The tourmaline group[M]. New York: Springer, 1985.

    [20] MENG J, LIU J, and HUO X, et al. Conductivity method of alkaline solution in evaluating the spontaneous polarization property of tourmaline[J]. Appl Mech Mater, 2013, 320: 584–589.

    [21] ZHOU Y, ZHU D, ZHANG X, et al. Effect of spontaneous polarization of tourmaline on the grain growth behavior of 3YSZ powder[J]. J. Am.Ceram., 2022(6): 105.

    [23] HAWKINS K D, MACKINNON I D R, SCHNEEBERGER H.Influence of chemistry on the pyroelectric effect in tourmaline[J]. Am Mineral, 1995, 80: 491–501.

    [26] ERTL A, HUGHES J M, PERTLIK F, et al. Polyhedron distortions in tourmaline[J]. Can Mineral, 2002, 40(1): 153–162.

    ZHOU Lin, ZHANG Wei, ZHOU Lei, GUO Ming, DONG Faqin, KOTOVA Elena Leonidovna, KOTOV Leonid Nafanailovichd. Structure–Function Relationship of Fe–Mg Tourmaline Dominated by Positive Ion in Y Site[J]. Journal of the Chinese Ceramic Society, 2024, 52(10): 3192
    Download Citation