FURTHER CHARACTERIZATION OF THE ALUMINUM PEROXIDE OXIDE, ALO2, FORMED BY INTERFACIAL REACTION BETWEEN PT AND ALPHA-AL2O3
FURTHER CHARACTERIZATION OF THE ALUMINUM PEROXIDE OXIDE, ALO2, FORMED BY INTERFACIAL REACTION BETWEEN PT AND ALPHA-AL2O3
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DOI:
10.1016/0956-7151(94)00425-h
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发表时间:
1995-05-01
期刊:
影响因子:
--
通讯作者:
SASS, SL
中科院分区:
文献类型:
--
作者:
LU, YC;AGNEW, S;SASS, SL
A new metastable aluminum peroxide oxide, AlO2, was recently shown to form by an interfacial reaction in the presence of a kinetic constraint during diffusion-bonding of Pt and alpha-Al2O3. Further studies of the properties, bonding, formation kinetics and chemistry of AlO2 are described and the current slate of knowledge of the kinetics of its formation is summarized. Raman spectroscopy on AlO2 gave several peaks in the frequency range characteristic of peroxide ions, providing the strongest evidence yet for their presence. Electron microprobe analysis detected only Al and O, with any other elements, if present, being below the detectability limit of the wavelength dispersive technique. Rutherford backscattering spectroscopy at the carbon resonance energy could detect no carbon within the AlO2. Studies of. the effect of temperature on the Formation of AlO2 show that it forms after heating for 24h in the temperature range of 1200 to 1400 degrees C, but not at or below 1100 degrees C. Heating in air at 1200 degrees C causes AlO2 to first transform to a cubic form of Al2O3, before finally reverting to alpha-Al2O3. The dielectric constant of AlO2 is 22.7, approximately twice that of alpha-Al2O3 parallel to the c direction, and the hardness of 8.4 GPa is approximately one-half that of alpha-Al2O3.