首页> 外文会议>International Congress of Mechanical Engineering and Agricultural Science >Synthesis and morphological characterization of Li-Ti/PVP fibers as precursors for Li4Ti5O_(12)towards its future use as anode materials in Li-ion fiber batteries by means of Electrospinning
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Synthesis and morphological characterization of Li-Ti/PVP fibers as precursors for Li4Ti5O_(12)towards its future use as anode materials in Li-ion fiber batteries by means of Electrospinning

机译:Li-Ti / PVP纤维作为Li4Ti5O_(12)前体的合成和形态学表征在其未来用作锂离子纤维电池中的阳极材料的原料

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The ever-increasing evolution and popularity of electronic devices,in hand with globalization,has led to a highly innovative market,always in movement.Novel applications such as smart textiles,where portable electronics are coupled to fabrics,are expected to become a worldwide trend when they overcome some limitations,especially with the energy storage systems used to power them.It is in this context where a flexible battery with the shape of a fiber is of importance.Electrospinning is a versatile synthesis technique where micro and nano fibers can be obtained.When these fibers are conducted onto a substrate it is possible to produce materials with different characteristics and morphologies.In this work,Li4Ti5O_(12)(LTO)was synthesized as anode material for li-ion batteries and was further characterized.LTO is attractive as it presents characteristics such as high thermal stability,relatively high volumetric capacity and high cyclability.The synthesis of this material was developed in two steps.First,a precursor solution containing a spinnable polymer,and titanium and lithium salts,which were dissolved in a mixture of solvents,was subjected to a process of electrospinning.Then,the obtained fibers were calcined at temperatures between 650 and 850 °C for 7-10 hours in air or argon.Scanning electron microscopy(SEM)coupled to energy dispersive x-ray spectroscopy(EDS)was used to study its morphology and elemental composition.Meanwhile,thermogravimetric analysis(TGA)was performed to study the thermal stability.
机译:电子设备的越来越多的进化和普及,掌握全球化,导致了一个高度创新的市场,始终在运动中。智能纺织品等智能纺织品等智能电子设备的应用,预计将成为全球趋势当它们克服一些局限性时,特别是使用用于为它们供电的能量存储系统。在这种情况下,在这种情况下,具有纤维形状的柔性电池的重要性.Electhining是一种多功能合成技术,可以获得微型和纳米纤维当这些纤维进行到基材上时,可以产生具有不同特性和形态的材料。在该工作中,Li4Ti5O_(12)(12)(LTO)被合成为锂离子电池的阳极材料,并进一步表征。有吸引力当它呈现高热稳定性,相对较高的容量和高可靠性等特征时。这种材料的合成是开发的进行两步骤。首先,含有可旋转聚合物的前体溶液和溶解在溶剂的混合物中的钛和锂盐,进行电刺刀。然后,在650至850°之间的温度下煅烧所得纤维C在空气或氩气中进行7-10小时,偶联电子显微镜(SEM)与能量分散X射线光谱(EDS)用于研究其形态和元素组成。偶尔,进行热重分析(TGA)以研究热稳定性。

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