
doi: 10.1021/cm047768t
handle: 11588/309708
High surface area phosphosilicate glasses were synthesized by a new sol−gel method and characterized for structural, textural, and acid properties by X-ray diffraction, thermogravimetry/differential thermal analysis, IR spectroscopy (Fourier transform and diffuse reflectance Fourier transform), solid state 31P and 29Si NMR spectroscopy, N2 adsorption, and NH3 temperature programmed desorption. The glasses were synthesized by a sol−gel route hydrolyzing the precursors in an almost solely aqueous environment. Microstructural changes occurring during the conversion of the gels into the corresponding glasses were investigated. For all dried gels (383 K), the elimination of organic residues was complete at 673 K. After this heat treatment, ca. 80% of the phosphorus was present as free phosphoric acid except for the sample with the highest P content for which the percentage dropped to ca. 47%. Textural properties of samples treated at 673 K were greatly influenced by the composition. Surface area decreased and ...
surface acidity, N2 adsorption isotherms, phosphosilicate glasses, IR spectroscopy, sol-gel; phosphosilicate glasses; IR spectroscopy; NMR; N2 adsorption isotherms; surface acidity, sol-gel, 540, NMR, 620
surface acidity, N2 adsorption isotherms, phosphosilicate glasses, IR spectroscopy, sol-gel; phosphosilicate glasses; IR spectroscopy; NMR; N2 adsorption isotherms; surface acidity, sol-gel, 540, NMR, 620
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