Abstract
A series of bimetallic acetylacetonate (acac) complexes, Al x Cr 1− x (acac) 3, 0 ≤ x ≤ 1, have been synthesized for application as precursors for the CVD of substituted oxides, such as (Al x Cr 1− x ) 2O 3. Detailed thermal analysis has been carried out on these complexes, which are solids that begin subliming at low temperatures, followed by melting, and evaporation from the melt. By applying the Langmuir equation to differential thermogravimetry data, the vapour pressure of these complexes is estimated. From these vapour pressure data, the distinctly different enthalpies of sublimation and evaporation are calculated, using the Clausius–Clapeyron equation. Such a determination of both the enthalpies of sublimation and evaporation of complexes, which sublime and melt congruently, does not appear to have been reported in the literature to date.
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