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Thermochemistry of Li
1+x
Mn
2-
x
O
4
(0≤x≤1/3) spinel
Miaojun Wang,
Alexandra Navrotsky
Research output
:
Contribution to journal
›
Article
›
peer-review
32
Scopus citations
Overview
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Dive into the research topics of 'Thermochemistry of Li
1+x
Mn
2-
x
O
4
(0≤x≤1/3) spinel'. Together they form a unique fingerprint.
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Engineering & Materials Science
Thermochemistry
100%
Enthalpy
62%
Oxides
52%
Lattice constants
45%
Oxygen
36%
Lithium
33%
Oxidation
26%
Solid state reactions
23%
Oxygen vacancies
23%
Calorimetry
19%
Manganese
17%
Solid solutions
17%
Substitution reactions
15%
Molten materials
14%
Powders
12%
Temperature
6%
Physics & Astronomy
thermochemistry
86%
spinel
59%
enthalpy
54%
oxides
37%
trends
34%
oxygen
27%
lithium
26%
lattice parameters
26%
oxygen compounds
24%
oxidation
22%
cubic lattices
17%
manganese
15%
heat measurement
13%
solid solutions
12%
substitutes
12%
solid state
11%
deviation
10%
Chemical Compounds
Thermochemistry
71%
Enthalpy of Formation
43%
Oxide
32%
Lattice Parameter
29%
Dioxygen
14%
Calorimetry
14%
Oxidation Reaction
13%
Solid State Reaction
13%
Solid Solution
12%
Cubic Space Group
12%
Enthalpy
11%
Substitution Reaction
9%
Reduction
6%