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首页> 外文期刊>ACS nano >Carbon Nanotube Web with Carboxylated Polythiophene 'Assist' for High-Performance Battery Electrodes
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Carbon Nanotube Web with Carboxylated Polythiophene 'Assist' for High-Performance Battery Electrodes

机译:碳纳米管纤维网,具有羧化聚噻吩“辅助”,用于高性能电池电极

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A carbon nanotube (CNT) web electrode comprising magnetite spheres and few-walled carbon nanotubes (FWNTs) linked by the carboxylated conjugated polymer, poly[3-(potassium-4-butanoate) thiophene] (PPBT), was designed to demonstrate benefits derived from the rational consideration of electron/ion transport coupled with the surface chemistry of the electrode materials components. To maximize transport properties, the approach introduces monodispersed spherical Fe3O4 (sFe(3)O(4)) for uniform Li+ diffusion and a FWNT web electrode frame that affords characteristics of long-ranged electronic pathways and porous networks. The sFe(3)O(4) particles were used as a model high-capacity energy active material, owing to their well-defined chemistry with surface hydroxyl (-OH) functionalities that provide for facile detection of molecular interactions. PPBT, having a a-conjugated backbone and alkyl side chains substituted with carboxylate moieties, interacted with the FWNT a-electron-rich and hydroxylated sFe(3)O(4) surfaces, which enabled the formation of effective electrical bridges between the respective components, contributing to efficient electron transport and electrode stability. To further induce interactions between PPBT and the metal hydroxide surface, polyethylene glycol was coated onto the sFe(3)O(4) particles, allowing for facile materials dispersion and connectivity. Additionally, the introduction of carbon particles into the web electrode minimized sFe(3)O(4) aggregation and afforded more porous FWNT networks. As a consequence, the design of composite electrodes with rigorous consideration of specific molecular interactions induced by the surface chemistries favorably influenced electrochemical kinetics and electrode resistance, which afforded high-performance electrodes for battery applications.
机译:包括由羧化缀合聚合物连接的磁铁矿球和几个壁碳纳米管(FWNT)的碳纳米管(CNT)网电极,旨在展示衍生的益处(PPBT)(ppbt)从耦合电极材料组分的表面化学的电子/离子传输的合理考虑。为了最大化运输性能,该方法将单分散的球形Fe3O4(SFE(3)O(4))引入均匀Li +扩散和FWNT网状电极框架,其提供长距离电子途径和多孔网络的特性。 SFE(3)O(4)颗粒被用作模型高容量能量活性材料,由于其具有表面羟基(-OH)功能的明确定义的化学功能,其提供了分子相互作用的嵌体检测。 PPBT,具有由羧酸盐部分取代的α-缀合的骨干和烷基侧链,与FWNT A - 电子和羟基化的SFE(3)O(4)o(4)表面相互作用,其使得在各个组分之间形成有效的电气桥,有助于有效的电子传输和电极稳定性。为了进一步诱导PPBT和金属氢氧化物表面之间的相互作用,将聚乙二醇涂覆到SFE(3)O(4)颗粒上,允许容易的材料分散和连接。另外,将碳颗粒引入纤维素中最小化SFE(3)O(4)聚集并得到更多多孔FWNT网络。因此,具有良好影响电化学动力学和电极电阻的表面化学诱导的特定分子相互作用的复合电极的设计,这是电池应用的高性能电极。

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