A Curvature-Modulated Strategy for Single-Atom Catalysts toward Reciprocal Regulation in Li-S Batteries.
basic_science · Level V
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- Record sourced from PubMed, PMID 42394227.
- Also identified by DOI 10.1021/acs.nanolett.6c01176.
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Abstract
Single-atom catalysts have demonstrated great potential in addressing dual-electrode challenges in Li-S batteries, while the role of substrate curvature remains elusive. Herein, we report the regulation of electronic properties of Co single-atomic catalysts by modulating the curvature of carbon nanotube supports, thereby accomplishing distinct yet complementary optimization in both the cathode and anode. At the cathode, the curved single-atom catalyst manages to enhance polysulfide capture and accelerate sulfur redox kinetics; over the Li anode, it promotes uniform Li deposition by facilitating Li<sup>+</sup> transport and regulating nucleation behavior. Consequently, reciprocal optimization of both electrodes enables the Li-S full cell to deliver a discharge capacity of 1122.2 mAh g<sup>-1</sup> at 0.2 C. This work reveals distinct roles of curvature-modulated single-atomic mediators at the S cathode and Li anode, offering insights into the development of Li-S batteries.