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Electronic structure and electrode properties of tetracyanoquinodimethane (TCNQ): a surface science investigation of lithium intercalation into TCNQ

机译:四氰基喹二甲烷(TCNQ)的电子结构和电极性能:锂嵌入TCNQ的表面科学研究

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Organic materials are of interest as ion battery cathode materials because they offer advantages over inorganic cathodes such as abundant resources and a low ecological footprint. However, they suffer from slow kinetics and a comparatively low potential. In this paper, we have investigated alkali induced changes in the electronic structure of tetracyanoquinodimethane (TCNQ) to be used as cathode material in Li-ion batteries. Lithium was inserted stepwise into TCNQ thin films by exposure to lithium vapour and analysis by photoemission (PES) was performed. The evolution of core levels, electronic structure and Fermi-level with increasing lithium insertion into TCNQ was monitored. The results show that lithium insertion takes place under integer charge transfer and polaron formation. We find no indication of deterioration of the material. The consequences of evolution of electronic structure and polaron formation for electrode potential and kinetic properties of the material are discussed.
机译:有机材料作为离子电池阴极材料是令人感兴趣的,因为它们具有优于无机阴极的优势,例如资源丰富且生态足迹低。但是,它们的动力学缓慢且潜力较低。在本文中,我们研究了碱诱导的四氰基喹二甲烷(TCNQ)电子结构的变化,该结构将用作锂离子电池的正极材料。通过暴露在锂蒸气中,将锂逐步插入TCNQ薄膜中,并通过光发射(PES)进行分析。监测了铁水平,电子结构和费米能级随锂向TCNQ的插入增加的演变。结果表明锂插入发生在整数电荷转移和极化子形成下。我们没有发现材料变质的迹象。讨论了电子结构演变和极化子形成对电极电位和材料动力学特性的影响。

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