Keyphrases
DC Resistance
100%
Molybdenum Alloy
100%
Iron-chromium Alloy
100%
Transpassivity
100%
Transpassive Dissolution
100%
AC Impedance
100%
Dissolution Reaction
40%
Cr(VI)
40%
Anodic Film
40%
Mo Addition
40%
Sulfuric Acid
20%
Semiconductors
20%
Kinetic Parameters
20%
Impedance Spectroscopy
20%
Impedance Spectra
20%
Highly Doped
20%
Film Growth
20%
Catalytic Effect
20%
Resistance Measurement
20%
Electrical Contact Resistance
20%
Negative Surface Charge
20%
Cr(V)
20%
Ni-P
20%
Two-stage Process
20%
Generalized Model
20%
Solution Interfaces
20%
Transpassive
20%
Steady-state Response
20%
Electronic Resistance
20%
Fe-Cr Alloys
20%
Fe Fractions
20%
Rotating Ring-disc
20%
Rotating Disk Electrode Voltammetry
20%
Mo Content
20%
Mo Alloys
20%
Cr Alloys
20%
Impedance Response
20%
INIS
iron
100%
films
100%
impedance
100%
chromium
100%
molybdenum alloys
100%
alloys
83%
dissolution
83%
rings
33%
layers
16%
solutions
16%
comparative evaluations
16%
surfaces
16%
interfaces
16%
doped materials
16%
substrates
16%
kinetics
16%
relaxation
16%
steady-state conditions
16%
experimental data
16%
electrochemistry
16%
growth
16%
equations
16%
charges
16%
accumulation
16%
spectra
16%
spectroscopy
16%
semiconductor materials
16%
defects
16%
injection
16%
cations
16%
voltametry
16%
catalytic effects
16%
contacts (electric)
16%
Engineering
Rotating Ring
100%
Dissolution Reaction
100%
Mo Addition
100%
Iron
100%
Experimental Result
50%
Dc Resistance
50%
Process Stage
50%
Solution Interface
50%
Semiconductor Type
50%
Mo Content
50%
Kinetic Parameter
50%
Electric Resistance
50%
Material Science
Chromium
100%
Molybdenum Alloys
100%
Film
100%
Anodic Film
66%
Dielectric Spectroscopy
33%
Surface Charge
33%
Voltammetry
33%
Film Growth
33%
Chromium Alloys
33%