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Determination of total heterogeneity and fractal dimensions of high-temperature superconductors
Authors:Staszczuk  P.  Sternik  D.  Chądzyński  G. W.
Affiliation:(1) Department of Physicochemistry of Solid Surfaces, Chemistry Faculty, Maria Curie-Sk"lstrok"odowska University, M. Curie-Sk"lstrok"odowska Sq. 3, 20-031 Lublin, Poland;(2) Technical University, Wybrze"zdot"e Wyspia"nacute"skiego Str. 27, 50-370 Wroc"lstrok"aw, Poland
Abstract:Using thermo-analytical and sorptometric methods physicochemical properties and especially surface heterogeneity of HgBa2Ca2Cu3O8+delta, (Hg-1223) was investigated. The desorption energy distribution was derived from mass loss Q-TG and differential mass loss Q-DTG curves of thermodesorption in quasi-isothermal conditions of pre-adsorbed n-octane and water vapour. It is shown that the superconducting Hg-1223 phase is highly sensitive to water vapours. The mechanism of water adsorption depends largely on the activation time. By water vapour saturation in a period of 90 min, physisorption takes place. Prolonged periods result in a chemical decomposition. From nitrogen ad- and desorption isotherms the fractal dimension of superconductors were calculated. A new approach is proposed to calculate fractal dimension from Q-TG curves.This revised version was published online in November 2005 with corrections to the Cover Date.
Keywords:fractal dimension  heterogeneity  high-temperature superconductors  sorptometry  thermogravimetry
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