Name: Iron Negishi mechanistic NatCat 2018 Date: 2018-12-31 00:00:00 UTC
Description: Data supporting Nature Catalysis paper
DOI: 10.5523/bris.1kp2f62x3klb02mfz2qymcmxmx
Location: https://data.bris.ac.uk/data/dataset/1kp2f62x3klb02mfz2qymcmxmx/
Article: The highly surprising behaviour of diphosphine ligands in iron-catalysed Negishi cross-coupling
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Name: aic15095-sup-0001-suppinfo01.doc Date: 2015-12-28 00:00:00 UTC
Description: Supplementary data for Probing pore blocking effects on multiphase reactions within porous catal...
DOI:
Location: https://aiche.onlinelibrary.wiley.com/action/downloadSupplement?doi=10.1002%2Faic.15095&file=aic15095-sup-0001-suppinfo01.doc&cookieSet=1
Article: Probing pore blocking effects on multiphase reactions within porous catalyst particles using a discrete model
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Name: aic15415-sup-0001-suppinfo01.doc Date: 2016-07-27 00:00:00 UTC
Description: Supplementary data for Influence of catalyst pore network structure on the hysteresis of multiph...
DOI:
Location: https://aiche.onlinelibrary.wiley.com/action/downloadSupplement?doi=10.1002%2Faic.15415&file=aic15415-sup-0001-suppinfo01.doc&cookieSet=1
Article: Influence of catalyst pore network structure on the hysteresis of multiphase reactions
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Name: aic16687-sup-0001-FigureS1.doc Date: 2019-06-26 00:00:00 UTC
Description: Supplementary data for Optimizing catalyst pore network structure in the presence of deactivatio...
DOI:
Location: https://aiche.onlinelibrary.wiley.com/action/downloadSupplement?doi=10.1002%2Faic.16687&file=aic16687-sup-0001-FigureS1.doc&cookieSet=1
Article: Optimizing catalyst pore network structure in the presence of deactivation by coking
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Name: AAC.00564-19-s0001.pdf Date: 2019-09-23 00:00:00 UTC
Description: Supplementary data for Molecular Basis of Class A β-Lactamase Inhibition by Relebactam
DOI:
Location: https://aac.asm.org/content/aac/suppl/2019/09/12/AAC.00564-19.DCSupplemental/AAC.00564-19-s0001.pdf
Article: Molecular Basis of Class A β-Lactamase Inhibition by Relebactam
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Name: Structured Ni@NaA Zeolite supported on SiC Foam Catalyst for Catalytic CO2 Methanation Supporting Information (SI) Date: 2020-08-05 00:00:00 UTC
Description: Figure S1 Scheme of the experimental rig for catalytic CO2 methanation. Figure S2. H2 pulse che...
DOI:
Location: https://aiche.onlinelibrary.wiley.com/action/downloadSupplement?doi=10.1002%2Faic.17007&file=aic17007-sup-0001-supinfo.docx
Article: Structured Ni@NaA zeolite supported on silicon carbide foam catalysts for catalytic carbon dioxide methanation
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Name: Enlighten2 PyMOL plugin c Date: 2020-10-15 00:00:00 UTC
Description: The Enlighten2 PyMOL plugin code can be downloaded directly from the project website (https://en...
DOI:
Location: https://enlighten2.github.io/
Article: Enlighten2: molecular dynamics simulations of protein–ligand systems made accessible
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Name: Electrocatalytic Site Activity Enhancement via Orbital Overlap in A2MnRuO7 (A = Dy3+, Ho3+, Er3+) Pyrochlore Nanostructures Date: 2021-01-07 00:00:00 UTC
Description: This data folder corresponds to the study of the electrochemical behavior of A2MnRuO7 (A = Dy, H...
DOI:
Location: https://data.bris.ac.uk/datasets/2ziu8eflfw7zv25mc8j4h80jfl/2ziu8eflfw7zv25mc8j4h80jfl.zip
Article: Electrocatalytic Site Activity Enhancement via Orbital Overlap in A2MnRuO7 (A = Dy3+, Ho3+, and Er3+) Pyrochlore Nanostructures
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Name: Evolution of dynamical networks enhances catalysis in a designer enzyme Date: 2021-06-23 00:00:00 UTC
Description: Data related to: "Evolution of dynamical networks enhances catalysis in a designer enzyme". H. A...
DOI: 10.5523/bris.l6hm9j11yil92bh9rvh27i7ge
Location: https://data.bris.ac.uk/data/dataset/l6hm9j11yil92bh9rvh27i7ge
Article: Evolution of dynamical networks enhances catalysis in a designer enzyme
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Name: A Multiscale Workflow for Modelling Ligand Complexes of Zinc Metalloproteins Date: 2021-11-03 00:00:00 UTC
Description: Representative MD trajectories, topologies and input files for the protein:ligand complexes pres...
DOI: 10.5523/bris.10p78zgsappbz226bzrdagabq9
Location: https://data.bris.ac.uk/data/dataset/10p78zgsappbz226bzrdagabq9
Article: Multiscale Workflow for Modeling Ligand Complexes of Zinc Metalloproteins
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