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Efficient potential-tuning strategy through p-type doping for designing cathodes with ultrahigh energy density
Authors:Zhiqiang Wang  Da Wang  Zheyi Zou  Tao Song  Dixing Ni  Zhenzhu Li  Xuecheng Shao  Wanjian Yin  Yanchao Wang  Wenwei Luo  Musheng Wu  Maxim Avdeev  Bo Xu  Siqi Shi  Chuying Ouyang  Liquan Chen
Abstract:Designing new cathodes with high capacity and moderate potential is the key to breaking the energy density ceiling imposed by current intercalation chemistry on rechargeable batteries. The carbonaceous materials provide high capacities but their low potentials limit their application to anodes. Here, we show that Fermi level tuning by p-type doping can be an effective way of dramatically raising electrode potential. We demonstrate that Li(Na)BCF2/Li(Na)B2C2F2 exhibit such change in Fermi level, enabling them to accommodate Li+(Na+) with capacities of 290–400 (250–320) mAh g−1 at potentials of 3.4–3.7 (2.7–2.9) V, delivering ultrahigh energy densities of 1000–1500 Wh kg−1. This work presents a new strategy in tuning electrode potential through electronic band structure engineering.
Keywords:p-type doping strategy  electrochemical potential tuning  Li(Na)BCF2/B2C2F2 cathodes  ultrahigh energy densities
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