Peculiarities of the fabrication process and the structure of porous membranes based on two-phase fluorine- and phosphorus-containing sodium borosilicate glasses
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  • 作者:T. V. Antropova (1)
    S. V. Kalinina (1)
    T. G. Kostyreva (1)
    I. A. Drozdova (1)
    I. N. Anfimova (1)

    1. Grebenshchikov Institute of Silicate Chemistry
    ; Russian Academy of Sciences ; nab. Makarova 2 ; St.-Petersburg ; 199034 ; Russia
  • 关键词:fluorine ; and phosphorus ; containing sodium ; boron ; silicate glass ; leaching ; porous glass ; membranes ; structure
  • 刊名:Glass Physics and Chemistry
  • 出版年:2015
  • 出版时间:January 2015
  • 年:2015
  • 卷:41
  • 期:1
  • 页码:14-25
  • 全文大小:1,376 KB
  • 参考文献:1. Roskova, G.P. and Tsekhomskaya, T.S., The use of liquid phase separation phenomena for the synthesis of glasses and materials with specified properties, / Fiz. Khim. Stekla, 1981, vol. 7, no. 5, pp. 513鈥?34.
    2. Mazurin, O.V., Roskova, G.P., Aver鈥檡anov, V.I., and Antropova, T.V., / Dvukhfaznye stekla: Struktura, svoistva, primenenie (Two-Phase Glasses: Structure, Properties, and Applications), Leningrad: Nauka, 1991.
    3. Enke, D., Janowski, F., and Schwieger, W., Porous glasses in the 21st century: A short review, / Microporous Mesoporous Mater., 2003, vol. 60, no. 1, pp. 19鈥?0. ss="external" href="http://dx.doi.org/10.1016/S1387-1811(03)00329-9" target="_blank" title="It opens in new window">CrossRef
    4. Antropova, T.V., Physico-chemical processes of the formation of porous glasses and high-silica materials based on phase-separated alkali borosilicate systems, / Doctoral Dissertation, St. Petersburg, 2005.
    5. Tsekhomskaya, T.S., Roskova, G.P., Vil鈥檛sen, E.G., and Anfimova, I.N., Silver-chloride-activated photochromic Vicor glasses, / Sov. J. Glass Phys. Chem., 1992, vol. 18, no. 1, pp. 70鈥?4.
    6. Lapshin, A.E., Arsent鈥檈v, M.Yu., Pshenko, O.A., and Antropova, T.V., Structure of the KNO3 ferroelectric phase formed in the matrix of a nanoporous glass, / Fiz. Khim. Stekla, Pis鈥檓a Zh., 2012, vol. 38, no. 6, pp. 817鈥?19.
    7. Pshenko, O.A., Drozdova, I.A., Polyakova, I.G., Rogacki, K., C茂man, A., and Poprawski, R., Rysiakiewicz-Pasek E., and Antropova T. V. Ferromagnetic iron-containing porous glasses, / Glass Phys. Chem., 2014, vol. 40, no. 2, pp. 167鈥?72. ss="external" href="http://dx.doi.org/10.1134/S1087659614020175" target="_blank" title="It opens in new window">CrossRef
    8. Antropova, T.V., Veiko, V.P., Kostyuk, G.K., Girsova, M.A., Anfimova, I.N., Chuiko, V.A., and Yakovlev, E.B., Specific features of the formation of planar micro-optical elements on porous glass substrates under the effect of laser radiation with the subsequent sintering, / Glass Phys. Chem., 2012, vol. 38, no. 6, pp. 478鈥?90. ss="external" href="http://dx.doi.org/10.1134/S1087659612060028" target="_blank" title="It opens in new window">CrossRef
    9. Kirsh, Yu.E. and Timashev, S.F., Physico-chemical aspects of the functioning and design of membranes for the reverse osmosis, / Zh. Fiz. Khim., 1991, vol. 65, no. 9, pp. 2469鈥?478.
    10. Yong Wan Park, Method of leaching high-silica glass having 0.5鈥?.0% P<sub class="a-plus-plus">2sub>O<sub class="a-plus-plus">5sub>, US Patent 3785793, January 15, 1974.
    11. McMillan, P.W. and Matthews, C.E., Microporous glass for reverse osmosis, / J. Mater. Sci., 1976, vol. 11, no. 7, pp. 1187鈥?199. ss="external" href="http://dx.doi.org/10.1007/BF00545135" target="_blank" title="It opens in new window">CrossRef
    12. Fridrikhsberg, D.A., Sidorova, M.P., and Ermakova, L.E., Investigation of the surface electrical properties of membranes in the electrolytic solutions in connection with the problem of reverse osmosis, in / Membrane Processes of Separation of Liquid and Gas Mixtures, Tr. Inst.鈥擬osk. Khim.Tekhnol. Inst. im. D.I. Mendeleeva, 1982, no. 122, pp. 38鈥?9.
    13. Ermakova, T.P., Ananich, N.I., and Polyakov, G.V., Investigation of the separation characteristics of membranes of porous glasses for reverse osmosis, / Zh. Prikl. Khim. (St. Petersburg), 1977, vol. 50, no. 5, pp. 1015鈥?019.
    14. Moncouyoux, J.-P., Faurie, J.-P., and Kohlmuller, R., 脡tude et mise a point de membranes d鈥檜ltrafiltration en verre poreux, / Verres Refract., 1977, vol. 31, no. 4, pp. 405鈥?21.
    15. Porous glass membranes, Jpn Patent 58-64229, April 16, 1983.
    16. Por枚se membrane, BRD Patent 2462567, October 20, 1977.
    17. Adsorbents for blood protein fractionation, Jpn Patent 57-170263, October 20, 1982.
    18. Device for diafiltration, Switzerland Patent 637028, July 15, 1983.
    19. Yao, S. and Santiago, J.G., Porous glass electroosmotic pumps: Theory, / J. Colloid Interface Sci., 2003, vol. 268, no. 2, pp. 133鈥?42. ss="external" href="http://dx.doi.org/10.1016/S0021-9797(03)00731-8" target="_blank" title="It opens in new window">CrossRef
    20. Yao, S., Hertzog, D.E., Zeng, S., Mikkelsen, J.C., Jr., and Santiago, J.G., Porous glass electroosmotic pumps: Design and experiments, / J. Colloid Interface Sci., 2003, vol. 268, no. 2, pp. 143鈥?53. ss="external" href="http://dx.doi.org/10.1016/S0021-9797(03)00730-6" target="_blank" title="It opens in new window">CrossRef
    21. Evstrapov, A.A., Esikova, N.A., Rudnitskaya, G.E., Antropova, T.V., and Anfimova, I.N., Development of an optical sensor element for microfluidic chips based on sodium borosilicate porous glasses, / Nauchn. Priborostr., 2010, vol. 20, no. 1, pp. 52鈥?8.
    22. Esikova, N.A., Evstrapov, A.A., Bulyanitsa, A.L., and Antropova, T.V., Investigation of the specific features of the change in the fluorescence signal of the sensor element based on a porous glass on the concentration of labeled insulin, / Glass Phys. Chem., 2015, vol. 41, no. 1 (in press).
    23. Takusagawa, N., Yamamoto, K., and Kitajima, K., Structure of porous glass prepared from fluorine-containing sodium borosilicate glasses, / J. Non-Cryst. Solids, 1987, vols. 95鈥?6,Part II, pp. 1055鈥?062. ss="external" href="http://dx.doi.org/10.1016/S0022-3093(87)80716-0" target="_blank" title="It opens in new window">CrossRef
    24. Antropova, T., Drozdova, I., Kukhtevich, I., Evstrapov, A., and Esikova, N., Application of high-resolution microscopy and optical spectroscopy for study of phase separation in phosphorus- and fluorine-containing sodium borosilicate glasses, / Opt. Appl., 2010, vol. XL, no. 2, pp. 293鈥?04.
    25. Exnar, P., Macroporous glass with P<sub class="a-plus-plus">2sub>O<sub class="a-plus-plus">5sub> and fluorides content, in / Book of Abstracts of the Fifth ESG Conference, Prague, Czech Republic, June 21鈥?4, 1999, Prague, 1999, p. 184.
    26. Zhdanov, S.P., Porous glasses and their structure, / Wiss. Z.-Friedrich-Schiller-Univ. Jena: Naturwiss. Reihe, 1987, vol. 36, nos. 5/6, pp. 817鈥?30.
    27. Exnar, P., Makropor茅zn铆 Skla: Informativn铆 P茅hled, Hradec Kr谩lov茅, Czech Republic: National Research Institute of Glass, 1989.
    28. Evstrapov, A., Esikova, N., Rudnitskaja, G., and Antropova, T., Porous glasses as a substrate for sensor elements, / Opt. Appl., 2010, vol. XL, no. 2, pp. 333鈥?34.
    29. / Mikroflyuidnye sistemy dlya khimicheskogo analiza (Microfluidic Systems for Chemical Analysis), Zolotov, Yu.A., and Kurochkin, V.E., Eds., Moscow: Fizmalit, 2011.
    30. Venzel鈥? B.I., Investigation of the possibilities for controlling the parameters of the porous structure of porous glasses, / Cand. Sci. Dissertation, Leningrad, 1979.
    31. Stolyar, S.V. and Anfimova, I.N., Dilatometric investigation of the phase separation in the sodium borosilicate glass with phosphorus and fluorine additions, / Glass Phys. Chem., 2011, vol. 37, no. 3, pp. 290鈥?92. ss="external" href="http://dx.doi.org/10.1134/S108765961103014X" target="_blank" title="It opens in new window">CrossRef
    32. Roskova, G.P., Antropova, T.V., Tsekhomskaya, T.S., and Anfimova, I.N., Influence of the volumes and radii of channels of the alkali borate phase of the phase-separated sodium borosilicate glasses on the rate of their interaction with the acid, / Fiz. Khim. Stekla, 1985, vol. 11, no. 5, pp. 578鈥?86.
    33. Antropova, T.V., Volkova, A., Petrov, D., Stolyar, S., Ermakova, L., Sidorova, M., Yakovlev, E., and Drozdova, I., Effect of structure parameters and composition of high-silica porous glasses on their thermal and radiation resistant properties, / Opt. Appl., 2005, vol. 35, no. 4, pp. 717鈥?23.
    34. Medvedeva, S.V., Preparation and electro-superficial characteristics of porous glass membranes with different compositions in 1: 1 solutions鈥攃harge electrolytes, / Cand. Sci. Dissertation, St. Petersburg, 2004.
    35. Antropova, T.V., Drozdova, I.A., Vasilevskaya, T.N., Volkova, A.V., Ermakova, L.E., and Sidorova, M.P., Structural transformations in thermally modified porous glasses, / Glass Phys. Chem., 2007, vol. 33, no. 2, pp. 109鈥?21. ss="external" href="http://dx.doi.org/10.1134/S1087659607020034" target="_blank" title="It opens in new window">CrossRef
    36. Tarasevich, N.I., / Rukovodstvo k praktikumu po spektral鈥檔omu analizu (Guide to Spectral Analysis Practicum), Moscow: Moscow State University, 1977.
    37. Kalinin, A.I and Gileva, K.G., Microchemical determination of boron in glasses, / Fiz. Khim. Stekla, 1976, vol. 2, no. 4, pp. 378鈥?80.
    38. Piryutko, M.M. and Mironovich, V.Ya., / Uskorennyi fotokolorimetricheskii metod opredeleniya ftora v silikatnykh materialakh (Expedited Photocolorimetric Method for Determination of Fluorine in Silicate Materials), Available from VINITI, 1972, no. 340鈥?71.
    39. Shafran, I.G., Pavlova, M.V., and Titova, S.A., Rapid spectrophotometric determination of phosphorus by the molybdenum blue method, in / Trudy Vsessoyuznogo instituta khimicheskikh reaktivov i osobo chistykh khimicheskikh veshchestv (Proceedings of the All-Union Institute of Chemical Reagents and High-Purity Chemicals), Moscow: IREA, 1966, issue 28.
    40. Myshlyaeva, L.V. and Krasnoshchekov, V.V., / Analiticheskaya khimiya kremniya (Analytical Chemistry of Silicon), Moscow: Nauka, 1972.
    41. Drozdova, I.A. and Antropova, T.V., Features of a structure of the phase-separated and porous borosilicate glasses with/without an impurity of fluorid-ions according to electron microscopy, / Opt. Appl., 2008, vol. 38, no. 1, pp. 17鈥?4.
    42. McMillan, P., Structural studies of silicate glasses and melts鈥擜pplication and limitation of Raman spectroscopy, / Am. Mineral., 1984, vol. 69, nos. 7/8, pp. 622鈥?44.
    43. Mulevanov, S.V., Min鈥檏o, N.I., Kemenov, S.A., Osipov, A.A., and Bykov, V.N., Vibrational spectroscopy investigation of the structure of multicomponent phosphorus-containing silicate glasses, / Glass Ceram., 2009, vol. 66, nos. 34, pp. 117鈥?19. ss="external" href="http://dx.doi.org/10.1007/s10717-009-9137-3" target="_blank" title="It opens in new window">CrossRef
    44. Pronkin, A.A., Naraev, V.N., Toi Tung Binh, and Eliseev, S.Yu., Electrical conductivity of sodium borate glasses containing fluorine and chlorine, / Sov. J. Glass Phys. Chem., 1992, vol. 18, no. 4, p. 374.
    45. Kiprianov, A.A. and Karpukhina, N.G., Influence of fluoride additives on the electrical characteristics of alkali silicate electrode glasses, / Glass Phys. Chem., 2001, vol. 27, no. 1, pp. 74鈥?9. ss="external" href="http://dx.doi.org/10.1023/A:1009568022611" target="_blank" title="It opens in new window">CrossRef
    46. Brow, R.K., Tallant, D.R., Osborne, Z.A., Yang, Y., and Day, D.E., The effect of fluorine on the structure of phosphate glass, / Phys. Chem. Glasses, 1991, vol. 32, no. 5, pp. 188鈥?95.
    47. M枚ncke, D., Ehrt, D., Velli, L.L., Varsamis, C.P.E., and Kamitsos, E.I., Structure and properties of mixed phosphate and fluoride glasses, / Phys. Chem. Glasses, 2005, vol. 46, no. 2, pp. 67鈥?1.
    48. Vaisfel鈥檇, N.M. and Rabinovich, E.M., Electron microscopy investigation of fluoride and phosphate glasses, / Zh. Prikl. Khim. (St. Petersburg), 1952, vol. 32, no. 11, pp. 2393鈥?398.
    49. Sil鈥檝estrovich, S.I. and Rabinovich, E.M., On the problem of the nature of silencing particles in fluoride and phosphate opal glasses, / Zh. Prikl. Khim. (St. Petersburg), 1959, vol. 32, no. 8, pp. 1690鈥?695.
    50. Roskova, G.P., Antropova, T.V., Tsekhomskaya, T.S., and Anfimova, I.N., Influence of treatment of two-phase sodium borosilicate glass plates in acid solutions, / Fiz. Khim. Stekla, 1984, vol. 10, no. 3, pp. 354鈥?64.
    51. Antropova, T.V., The physicalchemical model of the process of leaching of phase-separated alkali borosilicate glasses and the formation of a porous glass structure, / Fiz. Khim. Stekla, 2012, vol. 脪. 38, no. 6, pp. 806鈥?11.
    52. / Eksperimental鈥檔ye metody v adsorbtsii i khromatografii (Experimental Methods in Adsorption and Chromatography), Kiselev, A.V. and Dreving, V.P., Eds., Moscow: Moscow State University, 1973.
    53. Grigorov, O.N., Koz鈥檓ina, Z.P., Markovich, A.V., and Fridrikhsberg, D.A., in / Elektrokineticheskie svoistva kapillyarnykh sistem (Electrokinetic Properties of Capillary Systems), Rebinder, P.A., Ed., Moscow: Academy of Sciences of the Soviet Union, 1956.
    54. Antropova, T.V., Tsyganova, T.A., and Krylova, N.L., On the relation of the diffusion and electrokinetic properties of porous glasses with their structure, / Fiz. Khim. Stekla, 1990, vol. 16, no. 5, pp. 732鈥?37.
    55. Belyustin, A.A. and Shultz, M.M., Interdiffusion of cations and the related processes in surface layers of alkali silicate glasses treated with aqueous solutions, / Fiz. Khim. Stekla, 1983, vol. 9, no. 1, pp. 3鈥?7.
    56. Taganov, I.N. and Sirenek, V.A., / Volnovaya diffuziya (Wave Diffusion), St. Petersburg: Research Institute of Chemistry of the St. Petersburg State University, 2000.
    57. Antropova, T.V. and Mazurin, O.V., Specific features of physical and chemical processes of treatment of two-phase sodium borosilicate glasses in acid solutions, / Fiz. Khim. Stekla, 1990, vol. 16, no. 3, pp. 424鈥?30.
    58. Antropova, T.V., Effect of the composition of the chemically unstable phase and pore sizes in a porous layer on the leaching of two-phase sodium borosilicate glasses, / Glass Phys. Chem., 1997, vol. 23, no. 3, pp. 245鈥?49.
    59. Myuller, R.L., Electrical conductivity of borosilicates in the stable state, / Zh. Tekh. Fiz., 1955, vol. 25, no. 11, pp. 1869鈥?879.
    60. Titova, G.P., Dobychin, D.P., and Burkat, T.M., On the problem of investigation of the kinetics of leaching of sodium borosilicate glasses in acids and layered sediment deposits (鈥渟tratae鈥? in the formed porous glass, in / XXVI Gertsenovskie chteniya, Nauchnye doklady (The XXVIth Herzen Lectures (Scientific Reports)), Leningrad: Khimiya, 1973, pp. 93鈥?04.
    61. Antropova, T., Morphology of the porous glasses: Colloid-chemical aspect, / Opt. Appl., 2008, vol. 38, no. 1, pp. 5鈥?6.
    62. Kreisberg, V.A. and Antropova, T.V., Changing the relation between micro- and mesoporosity in porous glasses: The effect of different factors, / Microporous Mesoporous Mater., 2014, vol. 190, pp. 128鈥?38. ss="external" href="http://dx.doi.org/10.1016/j.micromeso.2014.02.002" target="_blank" title="It opens in new window">CrossRef
    63. Iler, R.K., / The Chemistry of Silica: Solubility, Polymerization, Colloid and Surface Properties, and Biochemistry of Silica, New York: Wiley, 1979. Translated under the title / Khimiya kremnezema, Moscow: Mir, 1982, vols. 1, 2.
    64. Bekman, V.V., Burkat, T.M., and Shvetsova, V.I., Kinetics of transition of silica into a solution during the leaching of sodium borosilicate (SBS) glasses, in / XXX Gertsenovskie chteniya, Nauchnye doklady (The XXXIth Herzen Lectures (Scientific Reports)), Leningrad: Khimiya, 1977, pp. 37鈥?2.
    65. Antropova, T.V., Roskova, G.P., and Bakhanov, V.A., Effect of the temperature of the acid leaching treatment on the strata formation in microporous glass plates, / Glass Phys. Chem., 1995, vol. 21, no. 3, pp. 206鈥?13.
    66. Rouquerol, J., Avnir, D., Fairbridge, C.W., Everett, D.H., Haines, J.H., Pernicone, N., Ramsay, J.D.F., Sing, K.S.W., and Unger, K.K., Recommendations for the characterization of porous solids, / Pure Appl. Chem., 1994, vol. 66, no. 8, pp. 1739鈥?758. ss="external" href="http://dx.doi.org/10.1351/pac199466081739" target="_blank" title="It opens in new window">CrossRef
    67. Kreisberg, V.A., Rakcheev, V.P., and Antropova, T.V., Influence of the acid concentration on the morphology of micropores and mesopores in porous glasses, / Glass Phys. Chem., 2006, vol. 32, no. 6, pp. 615鈥?22. ss="external" href="http://dx.doi.org/10.1134/S1087659606060046" target="_blank" title="It opens in new window">CrossRef
  • 刊物类别:Chemistry and Materials Science
  • 刊物主题:Chemistry
    Ceramics,Glass,Composites,Natural Materials
    Characterization and Evaluation Materials
    Materials Science
    Physical Chemistry
    Russian Library of Science
  • 出版者:MAIK Nauka/Interperiodica distributed exclusively by Springer Science+Business Media LLC.
  • ISSN:1608-313X
文摘
The effect of minor additives of fluoride ions and phosphorus oxide on the leaching kinetics of two-phase sodium borosilicate (SBS) glasses in HCl aqueous solutions and the structural parameters of porous space of leached glasses have been investigated in order to create new vitreous nanostructured membranes with controlled parameters of the porous structure. It has been demonstrated that porous glasses (PGs) obtained from the two-phase glass of a modified composition have larger pores with a lower specific surface area in comparison to PG produced from the base SBS glass.

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