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Thermal desorption mass spectrometry of organic salts
Alfred L. Yergey, Robert J. Cotter
School of Medicine
Research output
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Contribution to journal
›
Article
›
peer-review
13
Scopus citations
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Chemical Compounds
Desorption Mass Spectrometry
93%
Field Desorption
91%
Collisional Activation
83%
Ammonium Compound
82%
Organic Salt
80%
Laser Desorption
72%
Fission
70%
Phosphonium
69%
Filament
62%
Mass Spectrum
54%
Ionization
49%
Desorption
47%
Electron Particle
33%
Ion
24%
Engineering & Materials Science
Thermal desorption
100%
Mass spectrometry
80%
Desorption
71%
Salts
58%
Ammonium compounds
40%
Ionization
27%
Electrons
20%
Ions
19%
Chemical activation
18%
Lasers
15%
Decomposition
15%
Heating
14%
Hot Temperature
10%
Medicine & Life Sciences
Quaternary Ammonium Compounds
99%
Heating
67%
Mass Spectrometry
56%
Salts
55%
Ions
52%
Lasers
50%
Electrons
50%
Hot Temperature
48%
Physics & Astronomy
mass spectroscopy
60%
salts
56%
desorption
55%
ammonium compounds
38%
mass spectra
21%
fission
19%
filaments
17%
fragments
17%
activation
16%
decomposition
15%
ionization
14%
heating
13%
ions
9%
lasers
9%
electrons
8%
phosphonium compounds
3%