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Self-Doped Conjugated Polymeric Binders Improve the Capacity and Mechanical Properties of V2O5 Cathodes

机译:自掺杂共轭聚合物粘合剂可提高V2O5阴极的容量和机械性能

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摘要

Polymeric binders serve to stabilize the morphology of electrodes by providing adhesion and binding between the various components. Successful binders must serve multiple functions simultaneously, including providing strong adhesion, improving conductivity, and providing electrochemical stability. A tradeoff between mechanical integrity and electrochemical performance in binders for lithium-ion batteries is one of the many challenges of improving capacity and performance. In this paper, we demonstrate a self-doped conjugated polymer, poly(9,9-bis(4′-sulfonatobutyl)fluorene-alt-co-1,4-phenylene) (PFP), which not only provides mechanical robustness but also improves electrode stability at temperatures as high as 450 °C. The self-doped PFP polymer is comprised of a conjugated polyfluorene backbone with sulfonate terminated side-chains that serve to dope the conjugated polymer backbone, resulting in stable conductivity. Composite electrodes are prepared by blending PFP with V2O5 in water, followed by casting and drying. Structural characterization with X-ray diffraction and wide-angle X-ray scattering shows that PFP suppresses the crystallization of V2O5 at high temperatures (up to 450 °C), resulting in improved electrode stability during cycling and improved rate performance. This study demonstrates the potential of self-doped conjugated polymers for use as polymeric binders to enhance mechanical, structural, and electrochemical properties.
机译:聚合物粘合剂通过在各种组分之间提供粘附力和粘合力来稳定电极的形态。成功的粘合剂必须同时发挥多种功能,包括提供强大的附着力,改善电导率和提供电化学稳定性。锂离子电池粘合剂中机械完整性和电化学性能之间的权衡是提高容量和性能的众多挑战之一。在本文中,我们演示了一种自掺杂共轭聚合物,聚(9,9-双(4'-磺基丁基)芴-alt-co-1,4-亚苯基)(PFP),它不仅具有机械强度,而且还具有提高了在高达450°C的温度下的电极稳定性。自掺杂的PFP聚合物由具有磺酸盐封端的侧链的共轭聚芴骨架组成,该侧链起到了掺杂共轭聚合物骨架的作用,从而实现了稳定的导电性。通过将PFP与V2O5混合在水中,然后浇铸和干燥来制备复合电极。 X射线衍射和广角X射线散射的结构表征表明,PFP抑制了高温(高达450°C)下V2O5的结晶,从而改善了循环期间的电极稳定性并提高了倍率性能。这项研究证明了自掺杂共轭聚合物作为聚合物粘合剂增强机械,结构和电化学性能的潜力。

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