摘要
To date, the effect of noble metal (NM) electronic structures on CO2 reaction activity remains unknown, and explicit screening criteria are still lacking for designing highly efficient catalysts in CO2-breathing batteries. Herein, by preferentially considering the decomposition of key intermediate Li2CO3, an intrinsic descriptor constituted of the (Formula presented.) orbital states and the electronegativity for predicting high-performance cathode material are discovered. As a demonstration, a series of graphene-supported noble metals (NM@G) as cathodes are fabricated via a fast laser scribing technique. Consistent with the preliminary prediction, Pd@G exhibits an ultralow overpotential (0.41 V), along with superior cycling performance up to 1400 h. Moreover, the overall thermodynamic reaction pathways on NM@G confirm the reliability of the established intrinsic descriptor. This basic finding of the relationship between the electronic properties of noble metal cathodes and the performance of Li-CO2 batteries provides a novel avenue for designing remarkably efficient cathode materials for metal-CO2 batteries.
源语言 | 英语 |
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文章编号 | 2302325 |
期刊 | Advanced Materials |
卷 | 35 |
期 | 33 |
DOI | |
出版状态 | 已出版 - 17 8月 2023 |