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Diseño racional de electrodos positivos de alto rendimiento de fosfato de litio y hierro con polímero conductor para baterías de ión litio

机译:锂离子电池用导电聚合物高性能磷酸铁锂正极的合理设计

摘要

LiFePO4 has been pointed out as a next-generation active material for lithium-ion (Li-ion) batteries and its performance has been progressively improved mostly by optimizing the synthesis conditions of this cathode material in order to obtain carbon‑coated nano-particles of controlled purity. Nevertheless, there is still the need for improving the composition and the preparation methods of LiFePO4-based electrodes, which is paramount for maximizing the capacity at high charge/discharge rates. In this regard, this thesis was focused on the improvement of the charge transport throughout the different electrode interphases in order to increase the conductivity and to enable higher energy and power output as compared to conventional electrode formulations. The general strategy followed in this thesis consisted in forming composite electrodes of LiFePO4 with intrinsically conducting polymers of the type poly(3,4‑alkylenedioxythiophene) [PXDOT] by electrochemical polymerization, by blending and by coating methods. Although composite battery electrodes with conducting polymers have been described previously,[1] this thesis presents effective means for obtaining composite electrodes by the electrochemical polymerization of monomers directly over LiFePO4-based electrodes, or by combining the cathode material with ready available conducting polymer.
机译:LiFePO4被指出是锂离子(Li-ion)电池的下一代活性材料,其性能主要通过优化该正极材料的合成条件来逐步得到改善,以便获得碳包覆的纳米级纳米粒子。控制纯度。然而,仍然需要改进基于LiFePO 4的电极的组成和制备方法,这对于最大化高充电/放电速率下的容量至关重要。在这方面,本论文集中于改善在整个不同电极相间的电荷传输,以增加电导率并与常规电极配方相比能够实现更高的能量和功率输出。本论文遵循的一般策略是通过电化学聚合,共混和涂覆方法,用具有固有导电性的聚(3,4-亚烷基二氧噻吩)[PXDOT]型聚合物形成LiFePO4复合电极。尽管先前已经描述了具有导电聚合物的复合电池电极,[1]但本文提出了一种有效的手段,可通过在基于LiFePO4的电极上直接进行单体的电化学聚合,或通过将阴极材料与现成的导电聚合物结合来获得复合电极。

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    Cíntora-Juárez Daniel;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 eng
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