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Tailoring ionic-electronic transport in PEO-Li4C60: Towards a new class of all solid-state mixed conductors

机译:在PEO-Li4C60中定制离子电子传输:迈向新型的所有固态混合导体

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Mixed ionic-electronic conductors (MIEC) are of growing interest for fuel cells, batteries and sensors. Here, by exploiting the unique properties of Li4C60 2D fulleride and poly(ethylene oxide) (PEO), we demonstrate the feasibility of a MIEC where the nature of transport can be tuned from ionic, to mixed, to almost entirely electronic, simply by changing the weight ratio of the two basic components. By coupling Li-7 MAS-NMR, electrochemical impedance spectroscopy and open circuit voltage (OCV) measurements of a Li/composite/LiFePO4 cell we demonstrate that: i) a fraction of Li+ ions is extracted by Li4C60 and confined into PEO amorphous strands similarly to what happens in PEO-salt systems; ii) a transition between prevalently ionic and electronic conductivity takes place at 33 wt% Li4C60. This new class of MIEC is very promising for the design of both chemically and electrochemically stable semi-cells and interfaces which can be employed in batteries and supercapacitors. (C) 2016 Elsevier Ltd. All rights reserved.
机译:混合离子电子导体(MIEC)对燃料电池,电池和传感器的关注日益增长。在这里,通过利用Li4C60 2D富勒烯和聚环氧乙烷(PEO)的独特性能,我们证明了MIEC的可行性,在该MIEC中,只需改变离子的传输性质就可以从离子,混合,几乎完全电子化两种基本成分的重量比。通过对Li /复合材料/ LiFePO4电池的Li-7 MAS-NMR,电化学阻抗谱和开路电压(OCV)测量进行耦合,我们证明:i)Li4C60提取一部分Li +离子,并类似地限制在PEO非晶链中PEO-盐体系中会发生什么; ii)在33 wt%的Li4C60上发生了离子传导性和电子传导性之间的过渡。 MIEC的这一新类别对于设计可用于电池和超级电容器的化学和电化学稳定的半电池和界面非常有前途。 (C)2016 Elsevier Ltd.保留所有权利。

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