Name: Table S2: Molecular energies of molecular No.1 (M1) to molecular No.29 (M29) (in kcal mol−1) calculated by 24 QM methods using the structure optimized at the B3LYP/6-311+G(d) level as starting structures Date: 2020-05-20 00:00:00 UTC
Description: Related Article: Sirirak, Jitnapa, Lawan, Narin, Van der Kamp, Marc W., Harvey, Jeremy N., Mulho...
DOI: 10.7717/peerj-pchem.8/supp-3
Location: http://dx.doi.org/10.7717/peerj-pchem.8/supp-3
Article: Benchmarking quantum mechanical methods for calculating reaction energies of reactions catalyzed by enzymes
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Name: Table S3: Reaction energies (in kcal mol−1) of reaction 1–20 calculated by 24 quantum mechanics methods Date: 2020-05-20 00:00:00 UTC
Description: Related Article: Sirirak, Jitnapa, Lawan, Narin, Van der Kamp, Marc W., Harvey, Jeremy N., Mulho...
DOI: 10.7717/peerj-pchem.8/supp-4
Location: http://dx.doi.org/10.7717/peerj-pchem.8/supp-4
Article: Benchmarking quantum mechanical methods for calculating reaction energies of reactions catalyzed by enzymes
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Name: Table S4: Errors of reaction energies (in kcal mol−1) of reaction 1–20, relative to the CCSD(T)/aug-cc-pVTZ results Date: 2020-05-20 00:00:00 UTC
Description: Related Article: Sirirak, Jitnapa, Lawan, Narin, Van der Kamp, Marc W., Harvey, Jeremy N., Mulho...
DOI: 10.7717/peerj-pchem.8/supp-5
Location: http://dx.doi.org/10.7717/peerj-pchem.8/supp-5
Article: Benchmarking quantum mechanical methods for calculating reaction energies of reactions catalyzed by enzymes
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Name: Table S5: Mean signed errors, standard deviations, maximum errors and minimum errors along with their reaction number (Rxn No.) of reaction energies (in kcal mol<sup>−1</sup>) of reaction 1–20 Date: 2020-05-20 00:00:00 UTC
Description: Related Article: Sirirak, Jitnapa, Lawan, Narin, Van der Kamp, Marc W., Harvey, Jeremy N., Mulho...
DOI: 10.7717/peerj-pchem.8/supp-6
Location: http://dx.doi.org/10.7717/peerj-pchem.8/supp-6
Article: Benchmarking quantum mechanical methods for calculating reaction energies of reactions catalyzed by enzymes
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Name: Table S6: Absolute errors, mean absolute errors and standard deviations of reaction energies (in kcal mol−1) of reaction 1–20. The absolute errors are given relative to the CCSD(T)/aug-cc-pVTZ results Date: 2020-05-20 00:00:00 UTC
Description: Related Article: Sirirak, Jitnapa, Lawan, Narin, Van der Kamp, Marc W., Harvey, Jeremy N., Mulho...
DOI: 10.7717/peerj-pchem.8/supp-7
Location: http://dx.doi.org/10.7717/peerj-pchem.8/supp-7
Article: Benchmarking quantum mechanical methods for calculating reaction energies of reactions catalyzed by enzymes
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Name: UK Catalysis Hub App (UKCHApp) Source Code Date: 2021-12-15 00:00:00 UTC
Description: Source code for Designing a data infrastructure for catalysis science aligned to FAIRdata principles
DOI:
Location: https://github.com/UK-Catalysis-Hub/ukcathubapp
Article: Designing a data infrastructure for catalysis science aligned to FAIR data principles
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Name: XAS Workflow Demo: Source Code Date: 2022-02-02 00:00:00 UTC
Description: Source Code for A Workflow Demonstrator for Processing Catalysis Research Data
DOI:
Location: https://github.com/UK-Catalysis-Hub/XAS-Workflow-Demo
Article: A Workflow Demonstrator for Processing Catalysis Research Data
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Name: Supplementary Data for: The influence of phase purity on the stability of Pt/LaAlO3 catalysts in the aqueous phase reforming of glycerol Date: 2022-12-01 00:00:00 UTC
Description: Supplementary data to article
DOI:
Location: https://ars.els-cdn.com/content/image/1-s2.0-S2468519422004591-mmc1.docx
Article: The influence of phase purity on the stability of Pt/LaAlO3 catalysts in the aqueous phase reforming of glycerol
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Name: Electronic Supplementary Information (ESI): Modelling the kinetics of stearic acid destruction on TiO2 ‘self-cleaning’ photocatalytic films Date: 2022-10-25 00:00:00 UTC
Description: Supplementary data to article
DOI:
Location: https://ars.els-cdn.com/content/image/1-s2.0-S0926860X22004227-mmc1.docx
Article: Modelling the kinetics of stearic acid destruction on TiO2 ‘self-cleaning’ photocatalytic films
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Name: Electronic Supplementary Information ESI: 3D printed, plastic photocatalytic flow reactors for water purification Date: 2022-05-24 00:00:00 UTC
Description: Supplementary data to article
DOI:
Location: https://static-content.springer.com/esm/art%3A10.1007%2Fs43630-022-00242-y/MediaObjects/43630_2022_242_MOESM1_ESM.docx
Article: 3D printed, plastic photocatalytic flow reactors for water purification
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