Microstructural origin of locally enhanced CO2 electroreduction activity on gold

RG Mariano, M Kang, OJ Wahab, IJ McPherson… - Nature Materials, 2021 - nature.com
Understanding how the bulk structure of a material affects catalysis on its surface is critical to
the development of actionable catalyst design principles. Bulk defects have been shown to …

[引用][C] Microstructural origin of locally enhanced CO2 electroreduction activity on gold

RG Mariano, M Kang, OJ Wahab, IJ McPherson… - Nature Materials, 2021 - cir.nii.ac.jp
Microstructural origin of locally enhanced CO2 electroreduction activity on gold | CiNii Research
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[引用][C] Microstructural origin of locally enhanced CO₂ electroreduction activity on gold

RG Mariano, M Kang, OJ Wahab, IJ McPherson… - 2021 - dro.deakin.edu.au

Microstructural origin of locally enhanced CO2 electroreduction activity on gold

RG Mariano, M Kang, OJ Wahab… - Nature …, 2021 - wrap.warwick.ac.uk
Understanding how the bulk structure of a material affects catalysis on its surface is critical to
the development of actionable catalyst design principles. Bulk defects have been shown to …

[PDF][PDF] Microstructural origin of locally enhanced CO2 electroreduction activity on gold

RG Mariano, M Kang, OJ Wahab, IJ McPherson… - Nature Materials, 2021 - par.nsf.gov
Understanding how the bulk structure of a material affects catalysis on its surface is critical to
the development of actionable catalyst design principles. Bulk defects have been shown to …

Microstructural origin of locally enhanced CO2 electroreduction activity on gold

RG Mariano, M Kang, OJ Wahab… - Nature …, 2021 - pubmed.ncbi.nlm.nih.gov
Understanding how the bulk structure of a material affects catalysis on its surface is critical to
the development of actionable catalyst design principles. Bulk defects have been shown to …

[PDF][PDF] Microstructural origin of locally enhanced CO2 electroreduction activity on gold

RG Mariano, M Kang, OJ Wahab, IJ McPherson… - kananlab.stanford.edu
Understanding how the bulk structure of a material affects catalysis on its surface is critical to
the development of actionable catalyst design principles. Bulk defects have been shown to …

Microstructural origin of locally enhanced CO2 electroreduction activity on gold

RG Mariano, M Kang, OJ Wahab… - Nature …, 2021 - ui.adsabs.harvard.edu
Understanding how the bulk structure of a material affects catalysis on its surface is critical to
the development of actionable catalyst design principles. Bulk defects have been shown to …

Microstructural origin of locally enhanced CO2 electroreduction activity on gold.

RG Mariano, M Kang, OJ Wahab, IJ McPherson… - Nature …, 2021 - europepmc.org
Understanding how the bulk structure of a material affects catalysis on its surface is critical to
the development of actionable catalyst design principles. Bulk defects have been shown to …