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Added recommended_libraries.yml
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input/recommended_libraries.yml

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# Recommended RMG libraries per chemistry type.
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# Used by RMG's 'auto' library selection mode.
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# Each set maps to thermo, kinetics, and transport library lists.
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# Kinetics entries can be plain strings or dicts of {name: str, seed: bool}.
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#
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# CH pyrolysis is split into two sets:
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# CH_pyrolysis_core — fundamental high-T C/H chemistry (acetylene initiation,
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# alkane cracking, small radical thermo). Auto-included when
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# C present, T >= 800 K, and no O in species.
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# PAH_formation — first ring formation, naphthalene pathways (CPD + HACA),
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# second ring growth, larger PAH chemistry, alkyl-aromatics.
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# Only auto-included when no O in species; otherwise requires
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# the explicit <PAH_libs> keyword in the input file.
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primary:
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thermo:
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- primaryThermoLibrary
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- BurkeH2O2 # H/O
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- Spiekermann_refining_elementary_reactions # RMG's own high-level calculations for small species
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- thermo_DFT_CCSDTF12_BAC # Trusted thermo library
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- DFT_QCI_thermo # Trusted thermo library
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- CBS_QB3_1dHR # Trusted thermo library
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kinetics:
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- name: primaryH2O2 # H/O seed
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seed: true
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transport:
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- PrimaryTransportLibrary
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- OneDMinN2
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- NOx2018
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- GRI-Mech
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oxidation:
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thermo:
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- FFCM1(-) # H2/CO/C1 reaction model
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- FormicAcid # C1 oxidation pathways, inc. HOCO and HOCHO PESs
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- NOx2018 # C1/C1/C-N/N
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kinetics:
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- FormicAcid # C1 oxidation pathways, inc. HOCO and HOCHO PESs
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- FFCM1(-) # H2/CO/C1 reaction model
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- NOx2018 # C1/C1/C-N/N
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- 2005_Senosiain_OH_C2H2 # OH + acetylene surface reactions
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transport: []
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nitrogen:
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thermo:
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- NH3 # foundational NH3 thermo
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- NOx2018 # C1/C1/C-N/N
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- NitrogenCurran # computations for nitrogen-containing compounds
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- CHON_G4 # CHON small molecule G4
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kinetics:
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- primaryNitrogenLibrary # foundational nitrogen kinetics in combustion
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- NOx2018 # C1/C1/C-N/N
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- HydrazinePDep # well-skipping pressure-dependent reactions on the N3H5 and N4H6 PESs
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- Ethylamine
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transport: []
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sulfur:
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thermo:
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- SulfurLibrary
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kinetics:
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- primarySulfurLibrary
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- Sulfur/DMDS
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- Sulfur/DMS
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transport: []
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# Core high-T C/H chemistry: acetylene initiation, alkane cracking, fundamental radicals
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CH_pyrolysis_core:
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thermo:
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- NOx2018 # C1/C1/C-N/N
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- Butadiene_Dimerization
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- Chernov
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- heavy_oil_ccsdtf12_1dHR
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- Klippenstein_Glarborg2016
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kinetics:
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- C2H2_init
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- Klippenstein_Glarborg2016
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- Chernov
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transport: []
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# PAH formation and growth: first ring, naphthalene, polycyclic aromatics, alkyl-aromatics
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PAH_formation:
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thermo:
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- Butadiene_Dimerization
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- C10H11
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- s3_5_7_ane
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- Fulvene_H
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- naphthalene_H
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- vinylCPD_H
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- Lai_Hexylbenzene
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- Narayanaswamy
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- SABIC_aromatics_1dHR_extended
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- SABIC_aromatics_1dHR
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- SABIC_aromatics
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- bio_oil
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kinetics:
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# First aromatic ring formation
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- 2001_Tokmakov_H_Toluene_to_CH3_Benzene
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- 2003_Miller_Propargyl_Recomb_High_P
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- 2009_Sharma_C5H5_CH3_highP
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- 2015_Buras_C2H3_C4H6_highP
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- fascella
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- kislovB
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# Naphthalene pathways (CPD route + HACA)
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- Butadiene_Dimerization
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- C10H11
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- Fulvene_H
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- biCPD_H_shift
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- naphthalene_H
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- vinylCPD_H
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- Mebel_C6H5_C2H2
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- Mebel_Naphthyl
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# Larger aromatics and PAH growth
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- C6H5_C4H4_Mebel
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- C12H11_pdep
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- c-C5H5_CH3_Sharma
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- Lai_Hexylbenzene
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- Narayanaswamy
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# First-to-second aromatic ring sub-libraries
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- First_to_Second_Aromatic_Ring/2005_Ismail_C6H5_C4H6_highP
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- First_to_Second_Aromatic_Ring/2012_Matsugi_C3H3_C7H7_highP
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- First_to_Second_Aromatic_Ring/2016_Mebel_C10H9_highP
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- First_to_Second_Aromatic_Ring/2016_Mebel_C9H9_highP
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- First_to_Second_Aromatic_Ring/2016_Mebel_Indene_CH3_highP
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- First_to_Second_Aromatic_Ring/2017_Buras_C6H5_C3H6_highP
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- First_to_Second_Aromatic_Ring/2017_Mebel_C6H4C2H_C2H2_highP
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- First_to_Second_Aromatic_Ring/2017_Mebel_C6H5C2H2_C2H2_highP
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- First_to_Second_Aromatic_Ring/2017_Mebel_C6H5_C2H2_highP
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- First_to_Second_Aromatic_Ring/2017_Mebel_C6H5_C4H4_highP
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- First_to_Second_Aromatic_Ring/phenyl_diacetylene_effective
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# Aromatics high pressure PES libraries
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- Aromatics_high_pressure/C10H10_1
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- Aromatics_high_pressure/C10H10_2
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- Aromatics_high_pressure/C10H10_H_abstraction
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- Aromatics_high_pressure/C10H11_1
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- Aromatics_high_pressure/C10H11_2
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- Aromatics_high_pressure/C10H11_3
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- Aromatics_high_pressure/C10H11_4
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- Aromatics_high_pressure/C10H7
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- Aromatics_high_pressure/C10H8_H_abstraction_H_recomb
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- Aromatics_high_pressure/C10H9_1
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- Aromatics_high_pressure/C10H9_2
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- Aromatics_high_pressure/C10H9_3
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- Aromatics_high_pressure/C10H9_4
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- Aromatics_high_pressure/C12H10_1
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- Aromatics_high_pressure/C12H10_2
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- Aromatics_high_pressure/C12H10_H_abstraction
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- Aromatics_high_pressure/C12H11
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- Aromatics_high_pressure/C12H8_H_abstraction
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- Aromatics_high_pressure/C12H9
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- Aromatics_high_pressure/C14H10_H_abstraction_H_recomb
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- Aromatics_high_pressure/C14H11_1
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- Aromatics_high_pressure/C14H11_2
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- Aromatics_high_pressure/C14H11_3
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- Aromatics_high_pressure/C14H11_4
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- Aromatics_high_pressure/C14H9
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- Aromatics_high_pressure/C16H11
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- Aromatics_high_pressure/C7H8
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- Aromatics_high_pressure/C7H8_H_abstraction
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- Aromatics_high_pressure/C7H9
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- Aromatics_high_pressure/C8H6_H_abstraction
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- Aromatics_high_pressure/C8H7
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- Aromatics_high_pressure/C8H8_H_abstraction
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- Aromatics_high_pressure/C8H9
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- Aromatics_high_pressure/C9H10_H_abstraction
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- Aromatics_high_pressure/C9H11
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- Aromatics_high_pressure/C9H7
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- Aromatics_high_pressure/C9H8_1
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- Aromatics_high_pressure/C9H8_2
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- Aromatics_high_pressure/C9H8_H_abstraction
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- Aromatics_high_pressure/C9H9_1
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- Aromatics_high_pressure/C9H9_2
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transport: []
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liquid_oxidation:
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thermo: []
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kinetics:
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- Chung_solvation_corrections
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transport: []
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surface:
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thermo:
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- surfaceThermoLi
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- surfaceThermoPt111
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- surfaceThermoNi111
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kinetics:
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- name: Surface/CPOX_Pt/Deutschmann2006_adjusted
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seed: false
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- Surface/Methane/Deutschmann_Pt
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- Surface/Methane/Vlachos_Pt111
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- Surface/Methane/Vlachos_Rh
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- Surface/Methane/Deutschmann_Ni
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- Surface/DOC/Arevalo_Pt111
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- Surface/DOC/Ishikawa_Rh111
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- Surface/DOC/Mhadeshwar_Pt111
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transport: []
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surface_nitrogen:
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thermo: []
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kinetics:
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# Ammonia decomposition / oxidation on various facets
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- Surface/Ammonia/Schneider_Pt111
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- Surface/Ammonia/Schneider_Pt211
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- Surface/Ammonia/Schneider_Rh111
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- Surface/Ammonia/Schneider_Rh211
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- Surface/Ammonia/Schneider_Pd111
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- Surface/Ammonia/Schneider_Pd211
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- Surface/Ammonia/Novell_Pt111
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- Surface/Ammonia/Novell_Rh111
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- Surface/Ammonia/Novell_Pd111
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- Surface/Ammonia/Duan_Ni111
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- Surface/Ammonia/Duan_Ni211
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- Surface/Ammonia/Vlachos_Ru0001
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- Surface/Ammonia/Roldan_Ru0001
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- Surface/Ammonia/Popa_Rh111
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- Surface/Ammonia/Offermans_Pt111
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- Surface/Ammonia/Kraehnert_Pt111
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- Surface/Ammonia/Rebrov_Pt111
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- Surface/Ammonia/Scheuer_Pt
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# Hydrazine decomposition
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- Surface/Hydrazine/Roldan_Cu111
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- Surface/Hydrazine/Roldan_Ir111
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# Nitrogen-specific DOC reactions
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- Surface/DOC/Nitrogen
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transport: []
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halogens:
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thermo:
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- Chlorinated_Hydrocarbons
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- Chlorination
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- CHOBr_G4
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- CHOClBr_G4
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- CHOCl_G4
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- CHOFBr_G4
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- CHOFClBr_G4
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- CHOFCl_G4
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- CHOF_G4
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- Fluorine
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- halogens
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- iodinated_Hydrocarbons
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- 2-BTP_G4
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- 2-BTP
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kinetics:
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- 2-BTP
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- CH3Cl
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- CF2BrCl
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- DTU_mech_CH3Cl
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- NIST_Fluorine
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- Iodine-R_recombination
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- YF
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transport:
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- NIST_Fluorine
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electrochem:
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thermo:
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- LithiumPrimaryThermo
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- LithiumPrimaryThermo2
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- LithiumAdditionalThermo
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- computationalLithiumElectrode
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- electrocatThermo
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- electrocatLiThermo
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- LithiumSurface
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- surfaceThermoLi
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kinetics:
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- LithiumPrimaryKinetics
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- LithiumPrimaryKinetics2
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- LithiumPrimaryChargedKinetics
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- LithiumAnalogyKinetics
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- LithiumSurface
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- LithiumSurfaceAnalogy
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transport: []

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