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◆ Chemical Science2025-12-09· Materials science

Designing wide-spectrum-responsive cathode catalysts with abundant active sites for high-performance photo-enabled lithium–oxygen batteries <i>via</i> band engineering

Yanhui Gan, Min Yue, Yujia Niu, Chengjie Wu, Songtao Zhang, Mengtao Ma, Hao Gong, Hairong Xue, Renzhi Ma

原始摘要(英文原文)· Original abstract
grown Zn-HHTP@ZnO heterojunction composite not only possesses abundant active catalytic sites but also exhibits a broad light absorption range. Consequently, the assembled LOBs with Zn-HHTP@ZnO cathode deliver a low charging potential of 3.20 V under illumination and an excellent energy efficiency of 93.4%, which is significantly higher than that of 78% under dark conditions. Therefore, this paper provides a deeper understanding of the mechanism of photoexcited charge carriers in LOBs and will facilitate further exploration of light-involved energy storage systems.
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Designing wide-spectrum-responsive cathode catalysts with abundant active sites for high-performance photo-enabled lithium–oxygen batteries <i>via</i> band engineering — 科研速览 Science Skim