An RMG-Py job created a pdep file network1798_2.py that, when run thorugh cantherm.py, fails as:
species(
label = 'H2CCCH(54)',
structure = SMILES('C#C[CH2]'),
E0 = (338.572,'kJ/mol'),
modes = [
HarmonicOscillator(frequencies=([3000,3100,440,815,1455,1000,2175,525,432.689,432.698,1818.5],'cm^-1')),
HinderedRotor(inertia=(0.000900968,'amu*angstrom^2'), symmetry=1, barrier=(0.119627,'kJ/mol'), semiclassical=False),
],
spinMultiplicity = 2,
opticalIsomers = 1,
molecularWeight = (39.0559,'amu'),
collisionModel = LennardJones(sigma=(5.118e-10,'m'), epsilon=(1.97136,'kJ/mol')),
energyTransferModel = SingleExponentialDown(alpha0=(3.5886,'kJ/mol'), T0=(300,'K'), n=0.85),
thermo = NASA(polynomials=[NASAPolynomial(coeffs=[3.09172,0.0173334,-8.20226e-06,-2.63335e-09,2.66039e-12,40755.9,8.10966], Tmin=(100,'K'), Tmax=(946.058,'K'), comment="""Low temperature range polynomial"""), NASAPolynomial(coeffs=[6.98216,0.00727208,-2.37771e-06,3.99149e-10,-2.69328e-14,39733.9,-11.9545], Tmin=(946.058,'K'), Tmax=(5000,'K'), comment="""High temperature range polynomial""")], Tmin=(100,'K'), Tmax=(5000,'K'), E0=(338.572,'kJ/mol'), comment="""NASA function fitted to Wilhoit function with B = 1000 K. Weighted RMS error = 0.020*R; Unweighted RMS error = 0.016*R;
DFT_QCI_thermo"""),
)
species(
label = 'CC#[C](687)',
structure = SMILES('CC#[C]'),
E0 = (509.217,'kJ/mol'),
modes = [
HarmonicOscillator(frequencies=([2750,2800,2850,1350,1500,750,1050,1375,1000,2175,525],'cm^-1')),
HinderedRotor(inertia=(2.8481,'amu*angstrom^2'), symmetry=1, barrier=(65.4834,'kJ/mol'), semiclassical=False),
],
spinMultiplicity = 2,
opticalIsomers = 1,
molecularWeight = (39.0559,'amu'),
collisionModel = LennardJones(sigma=(5.118e-10,'m'), epsilon=(1.97136,'kJ/mol')),
energyTransferModel = SingleExponentialDown(alpha0=(3.5886,'kJ/mol'), T0=(300,'K'), n=0.85),
thermo = NASA(polynomials=[NASAPolynomial(coeffs=[3.19855,0.0160834,-1.31287e-05,7.55468e-09,-1.73804e-12,61274.9,8.39545], Tmin=(100,'K'), Tmax=(1321.16,'K'), comment="""Low temperature range polynomial"""), NASAPolynomial(coeffs=[4.28044,0.00964036,-2.21725e-06,2.33961e-10,-9.36202e-15,61265.5,3.92084], Tmin=(1321.16,'K'), Tmax=(5000,'K'), comment="""High temperature range polynomial""")], Tmin=(100,'K'), Tmax=(5000,'K'), E0=(509.217,'kJ/mol'), comment="""NASA function fitted to Wilhoit function with B = 1000 K. Weighted RMS error = 0.011*R; Unweighted RMS error = 0.006*R;
Thermo group additivity estimation: group(Cs-CtHHH) + gauche(Cs(RRRR)) + other(R) + group(Ct-Cs) + other(R) + group(Ct-H) + other(R) + radical(Acetyl)"""),
)
species(
label = 'C3H2(38)',
structure = SMILES('C(=[CH])=[CH]'),
E0 = (530.397,'kJ/mol'),
modes = [
HarmonicOscillator(frequencies=([540,610,2055,180,180,180,724.081,3251.45,3251.56],'cm^-1')),
],
spinMultiplicity = 3,
opticalIsomers = 1,
molecularWeight = (38.048,'amu'),
collisionModel = LennardJones(sigma=(5.118e-10,'m'), epsilon=(1.97136,'kJ/mol')),
energyTransferModel = SingleExponentialDown(alpha0=(3.5886,'kJ/mol'), T0=(300,'K'), n=0.85),
thermo = NASA(polynomials=[NASAPolynomial(coeffs=[2.6868,0.0353355,-7.31919e-05,7.04873e-08,-2.45856e-11,63833.3,8.93545], Tmin=(100,'K'), Tmax=(907.561,'K'), comment="""Low temperature range polynomial"""), NASAPolynomial(coeffs=[4.79165,0.0100418,-4.91481e-06,8.87432e-10,-5.68303e-14,64110.8,2.61897], Tmin=(907.561,'K'), Tmax=(5000,'K'), comment="""High temperature range polynomial""")], Tmin=(100,'K'), Tmax=(5000,'K'), E0=(530.397,'kJ/mol'), comment="""NASA function fitted to Wilhoit function with B = 1000 K. Weighted RMS error = 0.019*R; Unweighted RMS error = 0.017*R;
DFT_QCI_thermo"""),
)
species(
label = 'H(11)',
structure = SMILES('[H]'),
E0 = (211.805,'kJ/mol'),
spinMultiplicity = 2,
opticalIsomers = 1,
molecularWeight = (1.00794,'amu'),
collisionModel = LennardJones(sigma=(5.949e-10,'m'), epsilon=(3.31997,'kJ/mol')),
energyTransferModel = SingleExponentialDown(alpha0=(3.5886,'kJ/mol'), T0=(300,'K'), n=0.85),
thermo = NASA(polynomials=[NASAPolynomial(coeffs=[2.5,-2.06395e-14,3.16626e-17,-1.60855e-20,2.52789e-24,25474.2,-0.444973], Tmin=(100,'K'), Tmax=(3203.53,'K'), comment="""Low temperature range polynomial"""), NASAPolynomial(coeffs=[2.5,-8.60783e-12,3.51727e-15,-6.30075e-19,4.17513e-23,25474.2,-0.444973], Tmin=(3203.53,'K'), Tmax=(5000,'K'), comment="""High temperature range polynomial""")], Tmin=(100,'K'), Tmax=(5000,'K'), E0=(211.805,'kJ/mol'), comment="""NASA function fitted to Wilhoit function with B = 1000 K. Weighted RMS error = 0.000*R; Unweighted RMS error = 0.000*R;
primaryThermoLibrary"""),
)
species(
label = '[CH2]C#[C](685)',
structure = SMILES('[CH2]C#[C]'),
E0 = (583.674,'kJ/mol'),
modes = [
HarmonicOscillator(frequencies=([3000,3100,440,815,1455,1000,2175,525],'cm^-1')),
HinderedRotor(inertia=(1.40849,'amu*angstrom^2'), symmetry=1, barrier=(32.384,'kJ/mol'), semiclassical=False),
],
spinMultiplicity = 3,
opticalIsomers = 1,
molecularWeight = (38.048,'amu'),
collisionModel = LennardJones(sigma=(5.118e-10,'m'), epsilon=(1.97136,'kJ/mol')),
energyTransferModel = SingleExponentialDown(alpha0=(3.5886,'kJ/mol'), T0=(300,'K'), n=0.85),
thermo = NASA(polynomials=[NASAPolynomial(coeffs=[3.19757,0.0177615,-1.90654e-05,1.13244e-08,-2.73191e-12,70228.5,7.16215], Tmin=(100,'K'), Tmax=(1002.83,'K'), comment="""Low temperature range polynomial"""), NASAPolynomial(coeffs=[5.92594,0.00687878,-2.78724e-06,5.02956e-10,-3.41629e-14,69681.3,-6.00839], Tmin=(1002.83,'K'), Tmax=(5000,'K'), comment="""High temperature range polynomial""")], Tmin=(100,'K'), Tmax=(5000,'K'), E0=(583.674,'kJ/mol'), comment="""NASA function fitted to Wilhoit function with B = 1000 K. Weighted RMS error = 0.011*R; Unweighted RMS error = 0.011*R;
DFT_QCI_thermo"""),
)
species(
label = 'C1C=[C]1(686)',
structure = SMILES('C1C=[C]1'),
E0 = (502.87,'kJ/mol'),
spinMultiplicity = 1,
opticalIsomers = 1,
molecularWeight = (39.0559,'amu'),
collisionModel = LennardJones(sigma=(5.118e-10,'m'), epsilon=(1.97136,'kJ/mol')),
energyTransferModel = SingleExponentialDown(alpha0=(3.5886,'kJ/mol'), T0=(300,'K'), n=0.85),
thermo = NASA(polynomials=[NASAPolynomial(coeffs=[3.60049,0.00147436,3.61189e-05,-4.743e-08,1.81793e-11,60502.3,8.66221], Tmin=(100,'K'), Tmax=(943.575,'K'), comment="""Low temperature range polynomial"""), NASAPolynomial(coeffs=[6.77275,0.00668231,-1.81735e-06,3.26896e-10,-2.55704e-14,59073.2,-10.8587], Tmin=(943.575,'K'), Tmax=(5000,'K'), comment="""High temperature range polynomial""")], Tmin=(100,'K'), Tmax=(5000,'K'), E0=(502.87,'kJ/mol'), comment="""NASA function fitted to Wilhoit function with B = 1000 K. Weighted RMS error = 0.038*R; Unweighted RMS error = 0.034*R;
Thermo group additivity estimation: group(Cs-(Cds-Cds)(Cds-Cds)HH) + gauche(Cs(RRRR)) + other(R) + group(Cds-CdsCsH) + gauche(CsOsCd) + other(R) + group(Cds-CdsCsH) + gauche(CsOsCd) + other(R) + ring(Cyclopropene) + radical(cyclopropenyl-vinyl)"""),
)
species(
label = 'CH3(22)',
structure = SMILES('[CH3]'),
E0 = (136.55,'kJ/mol'),
modes = [
HarmonicOscillator(frequencies=([532.913,1391.1,1391.15,2779.21,3448.42,3448.49],'cm^-1')),
],
spinMultiplicity = 2,
opticalIsomers = 1,
molecularWeight = (15.0345,'amu'),
collisionModel = LennardJones(sigma=(3.758e-10,'m'), epsilon=(1.23553,'kJ/mol')),
energyTransferModel = SingleExponentialDown(alpha0=(3.5886,'kJ/mol'), T0=(300,'K'), n=0.85),
thermo = NASA(polynomials=[NASAPolynomial(coeffs=[3.94801,0.000827588,8.34936e-06,-9.82641e-09,3.80107e-12,16425.4,0.336652], Tmin=(100,'K'), Tmax=(660.435,'K'), comment="""Low temperature range polynomial"""), NASAPolynomial(coeffs=[3.2217,0.00522646,-1.64125e-06,2.58224e-10,-1.62579e-14,16521.3,3.53938], Tmin=(660.435,'K'), Tmax=(5000,'K'), comment="""High temperature range polynomial""")], Tmin=(100,'K'), Tmax=(5000,'K'), E0=(136.55,'kJ/mol'), comment="""NASA function fitted to Wilhoit function with B = 1000 K. Weighted RMS error = 0.003*R; Unweighted RMS error = 0.004*R;
DFT_QCI_thermo"""),
)
species(
label = 'C2(69)',
structure = SMILES('[C]#[C]'),
E0 = (825.623,'kJ/mol'),
modes = [
HarmonicOscillator(frequencies=([1676.37],'cm^-1')),
],
spinMultiplicity = 3,
opticalIsomers = 1,
molecularWeight = (24.0214,'amu'),
collisionModel = LennardJones(sigma=(4.443e-10,'m'), epsilon=(0.920412,'kJ/mol')),
energyTransferModel = SingleExponentialDown(alpha0=(3.5886,'kJ/mol'), T0=(300,'K'), n=0.85),
thermo = NASA(polynomials=[NASAPolynomial(coeffs=[3.54696,-0.00113875,4.46275e-06,-3.72915e-09,9.95669e-13,99297.9,4.02567], Tmin=(100,'K'), Tmax=(1198.77,'K'), comment="""Low temperature range polynomial"""), NASAPolynomial(coeffs=[3.0665,0.00180036,-8.86512e-07,1.75326e-10,-1.24655e-14,99317.1,6.03036], Tmin=(1198.77,'K'), Tmax=(5000,'K'), comment="""High temperature range polynomial""")], Tmin=(100,'K'), Tmax=(5000,'K'), E0=(825.623,'kJ/mol'), comment="""NASA function fitted to Wilhoit function with B = 1000 K. Weighted RMS error = 0.003*R; Unweighted RMS error = 0.004*R;
DFT_QCI_thermo"""),
)
species(
label = 'N2(5)',
structure = SMILES('N#N'),
molecularWeight = (28.0135,'amu'),
collisionModel = LennardJones(sigma=(4.443e-10,'m'), epsilon=(0.920412,'kJ/mol')),
energyTransferModel = SingleExponentialDown(alpha0=(3.5886,'kJ/mol'), T0=(300,'K'), n=0.85),
thermo = NASA(polynomials=[NASAPolynomial(coeffs=[3.29868,0.00140824,-3.96322e-06,5.64152e-09,-2.44485e-12,-1020.9,3.95037], Tmin=(298,'K'), Tmax=(1000,'K')), NASAPolynomial(coeffs=[2.92664,0.00148798,-5.68476e-07,1.0097e-10,-6.75335e-15,-922.798,5.98053], Tmin=(1000,'K'), Tmax=(5000,'K'))], Tmin=(298,'K'), Tmax=(5000,'K'), E0=(-8.62478,'kJ/mol'), comment="""primaryThermoLibrary"""),
)
transitionState(
label = 'TS1',
E0 = (666.794,'kJ/mol'),
spinMultiplicity = 1,
opticalIsomers = 1,
)
transitionState(
label = 'TS2',
E0 = (795.478,'kJ/mol'),
spinMultiplicity = 1,
opticalIsomers = 1,
)
transitionState(
label = 'TS3',
E0 = (564.508,'kJ/mol'),
spinMultiplicity = 1,
opticalIsomers = 1,
)
transitionState(
label = 'TS4',
E0 = (629.437,'kJ/mol'),
spinMultiplicity = 1,
opticalIsomers = 1,
)
transitionState(
label = 'TS5',
E0 = (795.478,'kJ/mol'),
spinMultiplicity = 1,
opticalIsomers = 1,
)
transitionState(
label = 'TS6',
E0 = (962.173,'kJ/mol'),
spinMultiplicity = 1,
opticalIsomers = 1,
)
reaction(
label = 'reaction1',
reactants = ['H2CCCH(54)'],
products = ['C3H2(38)', 'H(11)'],
transitionState = 'TS1',
kinetics = Arrhenius(A=(5.2e+12,'s^-1'), n=0, Ea=(78447,'cal/mol'), T0=(1,'K'), comment="""Reaction and kinetics from Glarborg/highP."""),
)
reaction(
label = 'reaction2',
reactants = ['H(11)', '[CH2]C#[C](685)'],
products = ['H2CCCH(54)'],
transitionState = 'TS2',
kinetics = Arrhenius(A=(1.81e+14,'cm^3/(mol*s)','*|/',3), n=0, Ea=(0,'kJ/mol'), T0=(1,'K'), Tmin=(300,'K'), Tmax=(2500,'K'), comment="""R_Recombination estimate: [H_rad,Ct_rad]"""),
)
reaction(
label = 'reaction3',
reactants = ['H2CCCH(54)'],
products = ['C1C=[C]1(686)'],
transitionState = 'TS3',
kinetics = Arrhenius(A=(1.05e+08,'s^-1'), n=1.192, Ea=(225.936,'kJ/mol'), T0=(1,'K'), Tmin=(300,'K'), Tmax=(1600,'K'), comment="""Intra_R_Add_Endocyclic estimate: [R3_T,triplebond_intra_H,radadd_intra_cs2H]"""),
)
reaction(
label = 'reaction4',
reactants = ['CC#[C](687)'],
products = ['H2CCCH(54)'],
transitionState = 'TS4',
kinetics = Arrhenius(A=(6.13001e+07,'s^-1'), n=1.41407, Ea=(120.219,'kJ/mol'), T0=(1,'K'), comment="""intra_H_migration estimate: [R3H_ST,C_rad_out_2H,Ct_H_out]"""),
)
reaction(
label = 'reaction1',
reactants = ['H(11)', '[CH2]C#[C](685)'],
products = ['CC#[C](687)'],
transitionState = 'TS5',
kinetics = Arrhenius(A=(1e+13,'cm^3/(mol*s)'), n=0, Ea=(0,'kJ/mol'), T0=(1,'K'), Tmin=(300,'K'), Tmax=(1500,'K'), comment="""R_Recombination estimate: [C_rad/H2/Ct,H_rad]"""),
)
reaction(
label = 'reaction2',
reactants = ['CH3(22)', 'C2(69)'],
products = ['CC#[C](687)'],
transitionState = 'TS6',
kinetics = Arrhenius(A=(2e+13,'cm^3/(mol*s)'), n=0, Ea=(0,'kJ/mol'), T0=(1,'K'), Tmin=(300,'K'), Tmax=(1500,'K'), comment="""R_Recombination estimate: [Y_rad,C_methyl]"""),
)
network(
label = '1798',
isomers = [
'H2CCCH(54)',
'CC#[C](687)',
],
reactants = [
('C3H2(38)', 'H(11)'),
('H(11)', '[CH2]C#[C](685)'),
],
bathGas = {
'N2(5)': 1,
},
)
pressureDependence(
label = '1798',
Tmin = (290,'K'),
Tmax = (3500,'K'),
Tcount = 8,
Tlist = ([292.578,314.289,364.231,459.667,641.642,1011.65,1810.91,3163.57],'K'),
Pmin = (0.02,'bar'),
Pmax = (100,'bar'),
Pcount = 5,
Plist = ([0.0246349,0.115722,1.41421,17.2828,81.1857],'bar'),
maximumGrainSize = (1,'kcal/mol'),
minimumGrainCount = 200,
method = 'modified strong collision',
interpolationModel = ('Chebyshev', 6, 4),
activeKRotor = True,
activeJRotor = True,
rmgmode = True,
)
An RMG-Py job created a pdep file network1798_2.py that, when run thorugh cantherm.py, fails as:
Sure enough, the file contains two
reaction1reactions (and tworeaction2s)Full file is here: