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Crystallochemical aspects of structure controlled processes in oxide glasses

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Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Nano size crystals formation in SiO2-Al2O3-MgO-TiO2(ZrO2) glasses as a structure controlled process is described. The applicability of the structure - chemical parameters for prediction and modelling of the middle range ordering in glass as a nanocrystals precursor are presented.
Czasopismo
Rocznik
Strony
225--235
Opis fizyczny
Bibliogr. 25 poz.
Twórcy
autor
  • Institute of Glass and Ceramics, Postępu 9, 02-676 Warsaw, Poland
Bibliografia
  • [1] GALEENER F.L., LEADBETTER A.J., STRINGFELLOW A.W., Comparison of the neutron, Raman, and infrared vibrational spectra of vitreous SiO2, GeO2, and BeF2, Physical Review B 27(2), 1983, pp. 1052–78.
  • [2] PAULING L., The Nature of Chemical Bond, Cornell University Press, Oxford 1948.
  • [3] GOLDSCHMIDT V.M., Geochemische Verteilungsgesetze der Elemente, Skrifter Norske Visenskaps Akademii, Oslo, I. Mat.-Naturv. Klasse 1, 1926.
  • [4] DIETZEL A., Strukturchemie des Glases, Naturwissenschaften 29(36–37), 1941, p. 537– 47.
  • [5] DIETZEL A., Glastechnische Berichte 22, 1948, pp. 41–82.
  • [6] PRIGOGINE L., DEFAY R., Chemistry Thermodynamics, Longman Green, London 1954.
  • [7] SZUMERA M., WACŁAWSKA I., MOZGAWA M., SITARZ M., Spectroscopic study of biologically active glasses, Journal of Molecular Structure 744–747, 2005, pp. 609–14.
  • [8] ŚRODA M., STOCH L., Nanocrystallization of LaF3 in oxyfluoride glass, Optica Applicata 33(1), 2003, pp. 161–6.
  • [9] STOCH L., Ceramic Sciences Commission Papers – Ceramics 97, 2006, p. 161 (in Polish).
  • [10] BEAL G.H., PINCKNEY L.R., Nanophase glass-ceramics, Journal of the American Ceramic Society 82(1), 1999, pp. 5–16.
  • [11] PETZOLDT J., PANNHORST W., Chemistry and structure of glass-ceramic materials for high precision optical applications, Journal of Non-Crystalline Solids 129(1–3), 1991, pp. 191–8.
  • [12] TICK P., DEJNEKA M., [In] Proceedings of the XVIII International Congress on Glass, San Francisco, 1998.
  • [13] KIM H.G., KOMATSU T., Fabrication and properties of transparent glass-ceramics in Na2O–Nb2O5– TeO2 system, Journal of Materials Science Letters 17(13), 1998, pp. 1149 –51.
  • [14] KAWASAKI S., HONMA T., BENINI Y,. FUJIWARA T., SATO R., KOMATSU T., Writing of crystal-dots and lines by YAG laser irradiation and their morphologies in samarium tellurite glasses, Journal of Non-Crystalline Solids 325(1–3), 2003, pp. 61–9.
  • [15] HUIDAN ZENG, JIANRONG QIU, XIONGWEI JIANG, CONGSHAN ZHU, FUXI GAN, Effect of Al2O3 on the precipitation of Ag nanoparticles in silicate glasses, Journal of Crystal Growth 262(1–4), 2004, pp. 255–8.
  • [16] PINCKNEY L.R., BEALL G.H., Nanocrystalline non-alkali glass-ceramics, Journal of Non-Crystalline Solids 219, 1997, pp. 219–27.
  • [17] STOCH L., Real glass crystallization high resolution electron microscopy (HREM) study and classic nucleation theory concept, Optica Applicata 35(4), 2005, pp. 819–27.
  • [18] FURIĆ K., STOCH L., DUTKIEWICZ J., Raman study of TiO2 role in SiO2–Al2O3–MgO–TiO2–ZnO glass crystallization, Spectrochimica Acta – Part A: Molecular and Biomolecular Spectroscopy 61(7), 2005, pp. 1653–9.
  • [19] BAYERSDOFER P., Silikattechnik 1954, p. 381.
  • [20] VOLF M.B., Chemical Approach to Glass, Elsevier, Amsterdam 1984.
  • [21] STOCH L., Effect of cationic field strengths on the liquidus of oxide systems, Journal of the American Ceramic Society 51(8), 1968, pp. 419–24.
  • [22] PAUL A., Chemistry of Glasses, Chapman and Hall, London, New York 1983.
  • [23] BALTA P., [In] Proceedings of the 5th ESG Conference: Glass Science and Technology for the 21st Century, Prague, B4 (1999), 3.
  • [24] GÖRLICH E., The Effective Nuclear Charges and the Electronegativity, Polish Academy of Arts and Sciences, Kraków 1997.
  • [25] STOCH L., STOCH P., Crystal structures formation in glass from view of HRTEM, Journal of Thermal Analysis and Calorimetry 88(2), 2007, pp. 577–82.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW9-0006-0048
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