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Lithium-Ion Capacitor Based on Electrodes Constructed Via Electrostatic Spray Deposition

机译:基于静电喷涂沉积电极的锂离子电容器

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Conventional Electrochemical double-layer capacitors (EDLCs) are well suited as power devices that can provide large bursts of energy in short time periods. However, their relatively poor energy densities hinder their application in devices that require a simultaneous supply of both high energy and high power. In the wake of addressing this shortcoming of EDLCs, the concept of hybridization of lithium-ion batteries (LIBs) and EDLCs has gained significant scientific interest in past few years. Such a device, generally referred to as the 'lithium-ion capacitor' typically utilizes a lithium intercalating electrode along with a fast charging capacitor electrode in a lithium-containing electrolyte. Herein we have constructed a lithium ion capacitor comprising a Li_4Ti_5O_(12) -TiO_2 (LTO-TiO_2) anode and a graphene and carbon nanotube (G-CNT) composite cathode using electrostatic spray deposition (ESD). The morphology and material properties were studied using scanning and transmission electron microscopy and X-ray diffraction studies, respectively. Electrochemical characterization was thereafter carried out for both the half cells as well as full cells.
机译:常规的电化学双层电容器(EDLC)非常适合用作可在短时间内提供大量能量突发的功率器件。然而,它们相对较差的能量密度阻碍了它们在需要同时供应高能量和高功率的设备中的应用。在解决了EDLC的这一缺点之后,锂离子电池(LIB)和EDLC的混合概念在过去几年中获得了重大的科学兴趣。通常称为“锂离子电容器”的这种装置通常在含锂的电解质中利用锂嵌入电极以及快速充电电容器电极。本文中,我们使用静电喷涂沉积(ESD)构造了锂离子电容器,该电容器包括Li_4Ti_5O_(12)-TiO_2(LTO-TiO_2)阳极和石墨烯与碳纳米管(G-CNT)复合阴极。分别使用扫描电子显微镜和透射电子显微镜以及X射线衍射研究了形态和材料性能。此后,对半电池和全电池都进行了电化学表征。

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