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Determination of Mg
2+
Speciation in a TFSI
-
-Based Ionic Liquid with and Without Chelating Ethers Using Raman Spectroscopy
Tylan Watkins, Daniel Buttry
Molecular Sciences, School of (SMS)
Renewable Energy Electrochemistry, Center for (CREE)
Research output
:
Contribution to journal
›
Article
›
peer-review
73
Scopus citations
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Dive into the research topics of 'Determination of Mg
2+
Speciation in a TFSI
-
-Based Ionic Liquid with and Without Chelating Ethers Using Raman Spectroscopy'. Together they form a unique fingerprint.
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Engineering & Materials Science
Chelation
100%
Ionic liquids
89%
Raman spectroscopy
86%
Ethers
75%
Salts
60%
Ligands
57%
Oxygen
52%
Raman scattering
31%
Negative ions
29%
Conformations
27%
Positive ions
26%
Magnesium
22%
Temperature
17%
Physics & Astronomy
imides
91%
ethers
71%
salts
57%
Raman spectroscopy
55%
ligands
43%
oxygen
38%
liquids
34%
coordination number
24%
room temperature
23%
halides
23%
magnesium
20%
low concentrations
20%
anions
20%
cations
18%
Raman spectra
16%
interactions
8%
Chemical Compounds
Imide
62%
Ionic Liquid
49%
Raman Spectroscopy
48%
Ether
44%
Dioxygen
31%
Magnesium Salt
30%
Halide Salt
30%
Ambient Reaction Temperature
24%
Ligand
18%
Raman Spectrum
17%
Anion
12%
Cation
12%
Environment
12%