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Mobile ion crossover effects in the system LiFPbF
2
Al(PO
3
)
3
from electrical, mechanical and T
g
studies
A. R. Kulkarni, C. A. Angell
Research output
:
Contribution to journal
›
Article
›
peer-review
17
Scopus citations
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Dive into the research topics of 'Mobile ion crossover effects in the system LiFPbF
2
Al(PO
3
)
3
from electrical, mechanical and T
g
studies'. Together they form a unique fingerprint.
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Engineering & Materials Science
Anelastic relaxation
100%
Ions
75%
Glass
65%
Structural relaxation
47%
Relaxation time
35%
Glass transition
31%
Electric Conductivity
30%
Superconducting transition temperature
29%
Liquids
18%
Chemical analysis
17%
Temperature
10%
Chemical Compounds
Mechanical Relaxation
83%
Compound Mobility
62%
Glass
56%
Conductivity
54%
Structural Relaxation
36%
Ion
32%
Glass Transition Temperature
22%
Alkali
22%
Electrical Conductivity
21%
Liquid
14%
Time
9%
Physics & Astronomy
crossovers
74%
conductivity
40%
ions
38%
glass
35%
alkalies
19%
glass transition temperature
19%
relaxation time
16%
conduction
13%
electrical resistivity
12%
liquids
10%
temperature
6%