Name: 13.html Date: 2016-02-15 00:00:00 UTC
Description: Supplementary data for Stable amorphous georgeite as a precursor to a high-activity catalyst
DOI:
Location: https://www.nature.com/articles/nature16935/figures/13
Article: Stable amorphous georgeite as a precursor to a high-activity catalyst
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Name: 1.html Date: 2016-02-15 00:00:00 UTC
Description: Supplementary data for Stable amorphous georgeite as a precursor to a high-activity catalyst
DOI:
Location: https://www.nature.com/articles/nature16935/tables/1
Article: Stable amorphous georgeite as a precursor to a high-activity catalyst
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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: Extended Data Fig. 1 Overview of radical side-chain installation and relevant previous literature. Date: 2020-09-23 00:00:00 UTC
Description: Extended Data Fig. 1 Overview of radical side-chain installation and relevant previous literature.
DOI:
Location: https://www.nature.com/articles/s41586-020-2733-7/figures/4
Article: Light-driven post-translational installation of reactive protein side chains
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Name: Extended Data Fig. 2 Complementary strategies for mild protein-compatible photoredox reactions. Date: 2020-09-23 00:00:00 UTC
Description: Extended Data Fig. 2 Complementary strategies for mild protein-compatible photoredox reactions.
DOI:
Location: https://www.nature.com/articles/s41586-020-2733-7/figures/5
Article: Light-driven post-translational installation of reactive protein side chains
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Name: Extended Data Fig. 3 Investigation and optimization of BACED chemistry. Date: 2020-09-23 00:00:00 UTC
Description: Extended Data Fig. 3 Investigation and optimization of BACED chemistry.
DOI:
Location: https://www.nature.com/articles/s41586-020-2733-7/figures/6
Article: Light-driven post-translational installation of reactive protein side chains
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Name: Extended Data Fig. 4 Mechanistic investigation of the role of catechol in BACED reactions. Date: 2020-09-23 00:00:00 UTC
Description: Extended Data Fig. 4 Mechanistic investigation of the role of catechol in BACED reactions.
DOI:
Location: https://www.nature.com/articles/s41586-020-2733-7/figures/7
Article: Light-driven post-translational installation of reactive protein side chains
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Name: Extended Data Fig. 5 Initial experiments without iron using various hydride sources, and optimization study with sodium borohydride for pySOOF. Date: 2020-09-23 00:00:00 UTC
Description: Extended Data Fig. 5 Initial experiments without iron using various hydride sources, and optimiz...
DOI:
Location: https://www.nature.com/articles/s41586-020-2733-7/figures/8
Article: Light-driven post-translational installation of reactive protein side chains
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Name: Extended Data Fig. 6 Optimization study of Fe(ii)-mediated protein modification reaction with pySOOF. Date: 2020-09-23 00:00:00 UTC
Description: Extended Data Fig. 6 Optimization study of Fe(ii)-mediated protein modification reaction with py...
DOI:
Location: https://www.nature.com/articles/s41586-020-2733-7/figures/9
Article: Light-driven post-translational installation of reactive protein side chains
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Name: Extended Data Fig. 7 Investigations on pySOOF reagent reactivity and on-protein mechanism. Date: 2020-09-23 00:00:00 UTC
Description: Extended Data Fig. 7 Investigations on pySOOF reagent reactivity and on-protein mechanism.
DOI:
Location: https://www.nature.com/articles/s41586-020-2733-7/figures/10
Article: Light-driven post-translational installation of reactive protein side chains
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