Tab Page Summary
iridium(IV) ruthenium(IV) oxides (Ir0.4Ru0.6O2)
Atanasoska L., Atanasoska R., Trasatti S.
10.1016/0042-207X(90)90127-K
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Ir 77 Ir0 .2 Ru0 .8 O2 4f7/2 61.00 Ir 77 Ir0 .2 Ru0 .8 O2 4f7/2 , sat 62.50 Ir 77 Ir0 .4 Ru0 .6 O2 4f7/2 61.10 Ir 77 Ir0 .4 Ru0 .6 O2 4f7/2 , sat 62.50 Ir 77 Ir0 .6 Ru0 .4 O2 4f7/2 61.10 Ir 77 Ir0 .6 Ru0 .4 O2 4f7/2 , sat 62.50 Ir 77 Ir0 .8 Ru0 .2 O2 4f7/2 60.90 Ir 77 Ir0 .8 Ru0 .2 O2 4f7/2 , sat 62.10 Ir 77 Ir0 .7 Ru0 .3 O2 4f7/2 61.00 Ir 77 Ir0 .7 Ru0 .3 O2 4f7/2 , sat 62.30 Ir 77 IrO2 4f7/2 61.10 Ir 77 IrO2 4f7/2 , sat 62.30
mixed Gaussian/Lorentzian
Overall Energy Resolution (eV):
Charge Reference:
Adventitious carbon
Energy Scale Evaluation:
Reliable, with one-point correction of energy scale
Comment:
RuO2+IrO2 layers (1-2 mkm thick) were prepared on a thick plate of Ti by thermal decomposition (673 K, air) of aqueous or isopropanol solutions of RuCl3+IrCl3 in the required mole ratio.
Method of Determining Specimen Composition:
X-ray Photoelectron Spectroscopy
Method of Determining Specimen Crystallinity:
Specimen Temperature (K):
300
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