CH + CH3CHCH2

Gaz phase reaction (type: Bimolecular reactions)  


     
 
Datasheet    T(K) = 10-300   
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Channels
CH + CH3CHCH2 → H + CH2CHCHCH2
T(K): 10-300
Formula: Modified Arrhenius equation
Δ rH0 = -274.648
Δ rH298 = -286.968
2014-09-26
CH + CH3CHCH2 → CH3 + CH3CCH
T(K): 10-300
Formula: Modified Arrhenius equation
Δ rH0 = -267.388
Δ rH298 = -278.18
2014-09-26
k( )
cm3s-1
Details
3.60e-10 CH + CH3CHCH2 → H + CH2CHCHCH2
T(K) = 10-300
α = 3.60E-10
β = 0.00E+0
γ = 0.00E+0
F 0 = 1.4
g = 10
Type uncert: lognormal
Method: Reviews and Evaluations
3.60e-11 CH + CH3CHCH2 → CH3 + CH3CCH
T(K) = 10-300
α = 3.60E-11
β = 0.00E+0
γ = 0.00E+0
F 0 = 2
g = 10
Type uncert: lognormal
Method: Reviews and Evaluations
Reference
Origin: Datasheet
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Loison, J.-C. et al (2017)    T(K) = 10-800   
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Channels
CH + CH3CHCH2 → H + CH2CHCHCH2
T(K): 10-800
Formula: Modified Arrhenius equation
Δ rH0 = -274.648
Δ rH298 = -286.968
2018-03-08
CH + CH3CHCH2 → CH3 + CH3CCH
T(K): 10-800
Formula: Modified Arrhenius equation
Δ rH0 = -267.388
Δ rH298 = -278.18
2018-03-08
k( )
cm3s-1
Details
3.30e-10 CH + CH3CHCH2 → H + CH2CHCHCH2
T(K) = 10-800
α = 3.30E-10
β = 0.00E+0
γ = 0.00E+0
F 0 = 1.4
g = 7
Type uncert: logn
Method: Reviews and Evaluations
Description: (Daugey et al. 2005, Trevitt et al. 2013, Loison & Bergeat 2009b)
9.00e-11 CH + CH3CHCH2 → CH3 + CH3CCH
T(K) = 10-800
α = 9.00E-11
β = 0.00E+0
γ = 0.00E+0
F 0 = 1.4
g = 7
Type uncert: logn
Method: Reviews and Evaluations
Description: (Daugey et al. 2005, Trevitt et al. 2013, Loison & Bergeat 2009b)
Reference
Origin: Bibliography
Authors: Loison, J.-C. et al
Volume,Page: 470, 4075-4088
Year: 2017
DOI: DOI
Download citation: Bibtex RIS
 
Other database : OSU    T(K) = 10-280   
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Channels
CH + CH3CHCH2 → H + CH2CHCHCH2
T(K): 10-280
Formula: Modified Arrhenius equation
Δ rH0 = -274.648
Δ rH298 = -286.968
2009-03-27
k( )
cm3s-1
Details
1.16e-10 CH + CH3CHCH2 → H + CH2CHCHCH2
T(K) = 10-280
α = 3.45E-10
β = -5.50E-1
γ = 2.96E+1
F 0 = 2
g = 0
Type uncert: lognormal
Method: Estimation
Reference
Origin: Other database : OSU
Authors:
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Year:
DOI: -
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Daugey, N et al (2005)    T(K) = 77-170   
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Channels
CH + CH3CHCH2 → H + CH2CHCHCH2
T(K): 77-170
Formula: Modified Arrhenius equation
Δ rH0 = -274.648
Δ rH298 = -286.968
2009-07-17
k( )
cm3s-1
Details
4.00e-10 CH + CH3CHCH2 → H + CH2CHCHCH2
T(K) = 77-170
α = 4.00E-10
β = 0.00E+0
γ = 0.00E+0
F 0 = 0
g = 0
Type uncert: lognormal
Method: Measurements
Reference
Origin: Bibliography
Authors: Daugey, N et al
Volume,Page: 7,2921
Year: 2005
DOI: -
Download citation: Bibtex RIS
 
Loison, J.-C. et al (2009)    T(K) = 77-300   
Show/Hide those values
Channels
CH + CH3CHCH2 → H + CH2CHCHCH2
T(K): 77-300
Formula: Modified Arrhenius equation
Δ rH0 = -274.648
Δ rH298 = -286.968
2009-07-17
CH + CH3CHCH2 → CH3 + CH3CCH
T(K): 77-300
Formula: Modified Arrhenius equation
Δ rH0 = -267.388
Δ rH298 = -278.18
2009-07-17
k( )
cm3s-1
Details
3.10e-10 CH + CH3CHCH2 → H + CH2CHCHCH2
T(K) = 77-300
α = 3.10E-10
β = 0.00E+0
γ = 0.00E+0
F 0 = 0
g = 0
Type uncert: lognormal
Method: Measurements
9.00e-11 CH + CH3CHCH2 → CH3 + CH3CCH
T(K) = 77-300
α = 9.00E-11
β = 0.00E+0
γ = 0.00E+0
F 0 = 0
g = 0
Type uncert: lognormal
Method: Calculations
Reference
Origin: Bibliography
Authors: Loison, J.-C. et al
Volume,Page: 11,655
Year: 2009
DOI: -
Download citation: Bibtex RIS
 
Hebrard, E. et al (2009)    T(K) = 50-200   
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Channels
CH + CH3CHCH2 → H + CH2CHCHCH2
T(K): 50-200
Formula: Modified Arrhenius equation
Δ rH0 = -274.648
Δ rH298 = -286.968
2012-07-27
k( )
cm3s-1
Details
4.20e-10 CH + CH3CHCH2 → H + CH2CHCHCH2
T(K) = 50-200
α = 4.20E-10
β = 0.00E+0
γ = 0.00E+0
F 0 = 1.5
g = 0
Type uncert: lognormal
Method: Reviews and Evaluations
Description: Taken from Daugey et al. [2005]. Used in Hébrard et al. [2009]
Reference
Origin: Bibliography
Authors: Hebrard, E. et al
Volume,Page: 113,11227-11237
Year: 2009
DOI: DOI
Download citation: Bibtex RIS