阴极
电化学
氧化还原
兴奋剂
电压
离子
材料科学
电子转移
电子
电极
化学
电气工程
无机化学
光电子学
物理化学
物理
有机化学
量子力学
工程类
作者
Tian Wang,Taoqing Huang,Xun‐Lu Li,Lu Ma,Yuke Wang,Yan Qiao,Shang‐Peng Gao,Zulipiya Shadike,Zheng‐Wen Fu
标识
DOI:10.1002/anie.202205444
摘要
The rising demand for energy density of cathodes means the need to raise the voltage or capacity of cathodes. Transition metal (TM) doping has been employed to enhance the electrochemical properties in multiple aspects. The redox voltage of doped cathodes usually falls in between the voltage of undoped layered cathodes. However, we found anomalous redox features in NaTi1-y Vy S2 . The first discharge platform potential (2.4 V) is significantly higher than that of undoped NaTiS2 and NaVS2 (both around 2.2 V), and the energy density is raised by 15 %. We speculate that the anomalous voltage is mainly attributed to the strong hybridization in the Ti-V-S system. Ti3+ and V3+ undergo charge transfer and form a more stable Ti (t2g0 eg0 ) and V (t2g3 eg0 ) electronic configuration. Our results indicate that higher voltage of cathode materials could be achieved by strong TM-ligand covalency, and this conclusion provides possible opportunities to explore high voltage materials for future layered cathodes.
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