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Leveraging surface-engineered hollow architectures in high-performance copper plasmonic catalysts for enhanced selective photoelectrocatalytic CO₂ conversion to methanol
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A
DOI:10.1016/j.apcatb.2025.125983.png)
Abstract
En 中文
• Surface engineering enhances photo-electrochemical activity in the photocathode. • Composite photocathode shows excellent stability, charge separation, and transfer. • Nano-catalyst with high surface area achieved 95 % faradaic efficiency for methanol. • Long-Term Stable Nano-Catalyst Realizes AQE of 32.84 % via Surface Engineering
Journal
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IF:
21.1
Papers:
4.2K
Citations:
18.2W
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