Recent advances in copper-based catalysts for electrocatalytic CO 2 reduction toward multi-carbon products
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Tsinghua University Press
Reference257 articles.
1. Designing materials for electrochemical carbon dioxide recycling;M. B. Ross;Nat. Catal.,2019
2. Progress in carbon dioxide separation and capture: A review;H. Q. Yang;J. Environ. Sci.,2008
3. Irreversible climate change due to carbon dioxide emissions;S. Solomon;Proc. Natl. Acad. Sci. USA,2009
4. Increased flood risk linked to global warming;Q. Schiermeier;Nature,2011
5. How China could be carbon neutral by mid-century;S. Mallapaty;Nature,2020
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1. Electrochemical CO2 Reduction to Multicarbon Products on Non‐Copper Based Catalysts;ChemSusChem;2024-09-03
2. Manipulating local CO2/H2O ratio in electrocatalytic CO2 reduction toward multi-carbon product;Rare Metals;2024-08-26
3. Design and synthesis of magnesium-modified copper oxide nanosheets as efficient electrocatalysts for CO2 reduction;Nanoscale;2024
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