Study of aluminophosphate oxynitride (AlPON) materials by X-ray photoelectron (XPS) and diffuse reflectance Fourier transform IR spectroscopy (DRIFTS)

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José J. Benítez, Arantxa Díaz, Yves Laurent and José A. Odriozola


Abstract

A series of amorphous aluminophosphate oxynitrides (AlPON) have been obtained by nitridation of AlPO4 in a tubular furnace at 750 °C under a dry NH3 stream. Bulk nitrogen content is controlled by the reaction time and quantified by alkaline digestion with molten KOH. Samples have been analysed by X-ray photoelectron spectroscopy (XPS) and diffuse reflectance IR spectroscopy (DRIFTS). XPS results indicate that nitrogen selectively replaces oxygen atoms bonded to phosphorus in the [PO4 ] tetrahedra of AlPO4 leading to a mixture of [POxN4–x] units in AlPON. Simultaneously, an Al2O3-type phase develops. Compositions obtained by XPS are in good agreement with those expected from bulk formulation. Nitridation reaction starts at the surface of AlPO4 by breaking P–O bonds and generating terminal P–NH2 . Once surface P–NH2 saturation is achieved (above 3.6 mass% N), bulk nitridation occurs. In nitrogen saturated AlPON samples (ca. 20 mass% N) the presence of a surface P3N5 phase is proposed to be responsible for the slight surface nitrogen enrichment observed. The presence of structural (–NH–) groups, isoelectronic to (–O–), and their growing concentration with nitridation time have been detected by DRIFTS. Diffuse reflectance IR spectroscopy also suggests the presence of cyclic (P–N–P) structures.


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