Name: Supporting Information for Adv. Energy Mater., DOI: 10.1002/aenm.202201131 Date: 2022-10-03 00:00:00 UTC
Description: Supplementary data to article
DOI:
Location: https://onlinelibrary.wiley.com/action/downloadSupplement?doi=10.1002%2Faenm.202201131&file=aenm202201131-sup-0001-SuppMat.pdf
Article: Rapid Plasma Exsolution from an A‐site Deficient Perovskite Oxide at Room Temperature
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Name: Study of CO2 permeation in Zn2+â€modified Al2O3â€carbonate membrane Date: 2023-06-07 00:00:00 UTC
Description: Study of CO2 permeation in Zn2+â€modified Al2O3â€carbonate membrane
DOI: 10.25405/data.ncl.10318742
Location: https://data.ncl.ac.uk/articles/dataset/Study_of_CO_sub_2_sub_permeation_in_Zn_sup_2_sup_modified_Al_sub_2_sub_O_sub_3_sub_carbonate_membrane/10318742
Article: Study of CO<sub>2</sub> permeation in Zn<sup>2+</sup>‐modified Al<sub>2</sub>O<sub>3</sub>‐carbonate membrane
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Name: Recyclable Solid Catalyst for Deoxydehydration Date: 2015-12-22 18:08:00 UTC
Description: files for publication including article proof, suplementary data, athena files and origin files
DOI:
Location: https://rcahdrive.rc-harwell.ac.uk/index.php/s/mr7vqRCWcphIFUC?path=%2Facscatal.5b01936
Article: ReOx/TiO2: A Recyclable Solid Catalyst for Deoxydehydration
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Name: PDB Entry - 7QVH The crystal structure of HotPETase, an evolved thermostable variant of IsPETase Date: 2023-02-15 00:00:00 UTC
Description: PDB Entry - 7QVH(Status - Released) summary information: Title: The crystal structure of HotPETa...
DOI: 10.2210/pdb7qvh/pdb
Location: https://www.wwpdb.org/pdb?id=pdb_00007qvh http://www.ebi.ac.uk/pdbe-srv/view/entry/7qvh https://www.rcsb.org/structure/7QVH
Article: Directed evolution of an efficient and thermostable PET depolymerase
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Name: PDB Entry - 6XV4 Date: 2020-04-08 00:00:00 UTC
Description: PDB Entry - 6XV4 Neutron structure of ferric ascorbate peroxidase-ascorbate complex
DOI: 10.2210/pdb6xv4/pdb
Location: https://www.wwpdb.org/pdb?id=pdb_00006XV4 http://www.ebi.ac.uk/pdbe-srv/view/entry/6xv4 https://www.rcsb.org/structure/6XV4
Article: Visualizing the protons in a metalloenzyme electron proton transfer pathway
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Name: PDB Entry - 6TAE Date: 2020-04-08 00:00:00 UTC
Description: PDB Entry - 6TAE Neutron structure of ferric ascorbate peroxidase
DOI: 10.2210/pdb6tae/pdb
Location: https://www.wwpdb.org/pdb?id=pdb_00006TAE http://www.ebi.ac.uk/pdbe-srv/view/entry/6tae https://www.rcsb.org/structure/6TAE
Article: Visualizing the protons in a metalloenzyme electron proton transfer pathway
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Name: Molybdenum Species Evolution during Non‐Oxidative Dehydroaromatization Date: 2018-09-18 11:53:00 UTC
Description: zip file containing data supporting publication
DOI:
Location: https://rcahdrive.rc-harwell.ac.uk/index.php/s/mr7vqRCWcphIFUC?path=%2Fcctc201801299
Article: Determination of Molybdenum Species Evolution during Non‐Oxidative Dehydroaromatization of Methane and its Implications for Catalytic Performance
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Name: LanCLs have C-glutathionylation activity with potential to trap the eliminylome Date: 2020-01-01 00:00:00 UTC
Description: Enzyme-mediated damage repair or containment, whilst common for nucleic acids, is rare for prote...
DOI: 10.5287/bodleian:qrn18xodg
Location: https://ora.ox.ac.uk/objects/uuid:d8729aad-ca98-4f06-b14a-0a75ea306584
Article: LanCLs add glutathione to dehydroamino acids generated at phosphorylated sites in the proteome
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Name: Glycerol carboxylation over biochar - Data.xlsx Date: 2020-08-17 00:00:00 UTC
Description: Related Article: Collett, Catherine, Mašek, Ondřej, Razali, Nurul, McGregor, James(2020) Influen...
DOI:
Location: https://drive.google.com/file/d/1PFCb2zhIgaVr8MUmXf2B-qibfDHXE58N/view?usp=sharing
Article: Influence of Biochar Composition and Source Material on Catalytic Performance: The Carboxylation of Glycerol with CO2 as a Case Study
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Name: GT-Predict Date: 2018-11-12 00:00:00 UTC
Description: We utilized informatics and machine learning to build predictive software for enzyme functional ...
DOI: 10.5287/bodleian:zg5195kae
Location: https://ora.ox.ac.uk/objects/uuid:1b174bc0-4058-4057-8db4-59872c2b6d99
Article: Functional and informatics analysis enables glycosyltransferase activity prediction
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