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Collisional effects in organometallic multiphoton dissociation/ionization experiments: The modeling of townsend discharges
Jeanne M. Hossenlopp,
J. Chaiken
Department of Chemistry
Research output
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Contribution to journal
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Article
›
peer-review
3
Scopus citations
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Dive into the research topics of 'Collisional effects in organometallic multiphoton dissociation/ionization experiments: The modeling of townsend discharges'. Together they form a unique fingerprint.
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Physics & Astronomy
Townsend discharge
100%
dissociation
51%
ionization
44%
multiplication
32%
ions
29%
chromium compounds
18%
buffers
17%
gases
10%
xenon
10%
pressure dependence
10%
quantitative analysis
10%
chromium
9%
helium
8%
argon
8%
products
6%
electric potential
5%
electronics
5%
wavelengths
5%
Engineering & Materials Science
Organometallics
95%
Ionization
82%
Ions
58%
Experiments
22%
Chromium compounds
20%
Xenon
14%
Gases
12%
Argon
11%
Helium
11%
Chromium
11%
Wavelength
9%
Electronic equipment
8%
Chemical analysis
6%
Electric potential
5%
Chemical Compounds
Multiphoton Ionization (MPI)
76%
Metallocene
56%
Ionization
50%
Dissociation
45%
Ion
24%
Buffer Solution
13%
Pressure
12%
Gas
11%
Arene
8%
Plate Like Crystal
8%
Voltage
7%
Wavelength
7%
Purity
5%
Reaction Yield
4%