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Characterization of pore filling of mesoporous host systems by means of positronium annihilation lifetime spectroscopy (PALS)

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Abstrakty
EN
Positronium annihilation lifetime spectroscopy (PALS) is an alternative method for the determination of pore sizes and pore size distributions. It is a measuring methodology which shows no limitations in the lower nanometer region and works, besides, without destruction of the sample material. It can be used for the characterization of open and closed pores. Additionally, this technology offers the possibility to obtain pore filling ratios of gases, liquids and solids precisely. Polymorphous medicaments, like acetaminophen, show different crystallization behavior within a pore system, depending on the pore size. This property can be used to control the crystalline state of the medicament and to optimize therefore the pharmaceutical use of the active substance. In this study, acetaminophen (C8H9NO2), also known as Paracetamol, is incorporated into different porous systems. The filling of the pores is realized by an acetaminophen melt at 453 K. The silica membranes are dipped into the melt, subsequently removed and cooled. Information concerning the filling ratio of the pores with the pharmaceutical was received with the help of PALS. The extended Tao-Eldrup model forms the theoretical base, taking into account the pore size sensitive annihilation properties of the ortho-positronium in matter.
Czasopismo
Rocznik
Strony
281--286
Opis fizyczny
Bibliogr. 16 poz.
Twórcy
autor
autor
autor
autor
  • Institute of Chemical Technology, University of Leipzig, Linn?straße 3, 04103 Leipzig, Germany
Bibliografia
  • [1] JANOWSKI F., ENKE D., Porous glasses, [In] Handbook of Porous Solids, [Eds.] Schüth F.,Sing K.S.W., Weitkamp J., Vol. 3, Wiley-VCH, Weinheim, 2002, pp. 1432–1542.
  • [2] BEINER M., RENGARAJAN G.T., PANKAJ S., ENKE D., STEINHART M., Manipulating the crystalline state of pharmaceuticals by nanoconfinement, Nano Letters 7(5), 2007, pp. 1381–1385.
  • [3] BERNSTEIN J., Polymorphism in Molecular Crystals, Clarendon Press, Oxford, 2002.
  • [4] VIPPAGUNTA S.R., BRITTAIN H.G., GRANT D.J.W., Crystalline solids, Advanced Drug Delivery Reviews 48(1), 2001, pp. 3–26.
  • [5] LEUNER C., DRESSMAN J., Improving drug solubility for oral delivery using solid dispersions,European Journal of Pharmaceutics and Biopharmaceutics 50(1), 2000, pp. 47–60.
  • [6] KULLMANN J., ENKE D., THRAENERT S., KRAUSE-REHBERG R., INAYAT A., Characterization of nanoporous monoliths using nitrogen adsorption and positronium annihilation lifetime spectroscopy, Colloids and Surfaces A: Physicochemical and Engineering Aspects 357(1–3), 2010,pp. 17–20.
  • [7] ENKE D., JANOWSKI F., SCHWIEGER W., Porous glasses in the 21st century – a short review, Microporous and Mesoporous Materials 60(1–3), 2003, pp. 19–30.
  • [8] ENKE D., FRIEDEL F., JANOWSKI F., HAHN T., GILLE W., MÜLLER R., KADEN H., Ultrathin porous glass membranes with controlled texture properties, [In] Characterization of Porous Solids VI, Studies in Surface Science and Catalysis, [Eds.] Rodriguez-Reinoso F., McEnaney B., Rouquerol J.,Unger K., Vol. 144, Elsevier, Amsterdam, 2002, pp. 347–354.
  • [9] MOGENSEN O.E., Positron Annihilation in Chemistry, Springer, Berlin, 1995.
  • [10] JEAN Y.C., MALLON P.E., SCHRADER D.M. [Eds.], Principles and Application of Positron and Positronium Chemistry, World Scientific, Singapore, 2003.
  • [11] KRAUSE-REHBERG R., LEIPNER H.S., Positron Annihilation in Semiconductors, Springer, Berlin, 1999.
  • [12] KANSY J., Microcomputer program for analysis of positron annihilation lifetime spectra, Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 374(2), 1996, pp. 235–244.
  • [13] KANSY J., LT for Windows, Version 9.0, Silesian University, Katowice, Poland, 2007.
  • [14] ZALESKI R., GOWOREK J., KIERYS A., Temperature dependence of positronium lifetime in cylindrical pores, Physica Status Solidi C: Current Topics in Solid State Physics 4(10), 2007, pp. 3814–3818.
  • [15] ZALESKI R., WAWRYSZCZUK J., GOWOREK T., Pick-off models in the studies of mesoporous silica MCM-41. Comparison of various methods of the PAL spectra analysis, Radiation Physics and Chemistry 76(2), 2007, pp. 243–247.
  • [16] THRAENERT S., ENKE D., DLUBEK G., KRAUSE-REHBERG R., Positron lifetime spectroscopy on controlled pore glass, [In] Characterisation of Porous Solids VIII, [Eds.] Kaskel S., Llewellyn P.,Rodriguez-Reinoso F., Seaton N.A., RSC Publishing, Cambridge, 2009, pp. 94–102.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPW7-0023-0013
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