C6 + Photon

Gaz phase reaction (type: Photo-processes)

     
 
Datasheet 
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Channels
C6 + Photon → C + C5
Branching ratio : 10 %
Formula : Photo (Draine)
Δ rH0 = N/A
Δ rH298 = N/A
Date:2011-04-28
C6 + Photon → C2 + C4
Branching ratio : 10 %
Formula : Photo (Draine)
Δ rH0 = N/A
Δ rH298 = N/A
Date:2011-04-28
C6 + Photon → C3 + C3
Branching ratio : 80 %
Formula : Photo (Draine)
Δ rH0 = N/A
Δ rH298 = N/A
Date:2011-04-28
Details
C6 + Photon → C + C5
α = 1.00E-10
β = 0.00E+0
γ = 1.70E+0
F 0 = 2
g = 0
Type uncert: lognormal
UVField: Draine
Method: Calculations
Description: Branching ratio measurement
C6 + Photon → C2 + C4
α = 1.00E-10
β = 0.00E+0
γ = 1.70E+0
F 0 = 2
g = 0
Type uncert: lognormal
UVField: Draine
Method: Calculations
Description: Branching ratio measurement
C6 + Photon → C3 + C3
α = 8.00E-10
β = 0.00E+0
γ = 1.70E+0
F 0 = 2
g = 0
Type uncert: lognormal
UVField: Draine
Method: Calculations
Description: Branching ratio measurement
Reference
Origin: Datasheet
Authors: Chabot, M. et al
Volume,Page: 524,A39
Year: 2010
DOI: 10.1051/0004-6361/201015010 DOI
Download citation: Bibtex RIS
 
Datasheet 
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Channels
C6 + Photon → C6+ + e-
Branching ratio : 100 %
Formula : Photo (Draine)
Δ rH0 = N/A
Δ rH298 = N/A
Date:2011-04-28
Details
C6 + Photon → C6+ + e-
α = 2.00E-10
β = 0.00E+0
γ = 2.50E+0
F 0 = 2
g = 0
Type uncert: lognormal
UVField: Draine
Method: Calculations
Reference
Origin: Datasheet
Authors: van Dishoeck, E. F.
Volume,Page: 49-72
Year: 1988
DOI: -
Download citation: Bibtex RIS