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Electrochemical insertion properties of lithium vanadium titanate, LiVTiO4

机译:钛酸钒酸锂LiVTiO4的电化学插入性能

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The electrochemical insertion properties of the novel spinet phase, lithium vanadium titanate, LiVTiO4 (Fd3m, a = 8.236 (A) over circle) have been evaluated in non-aqueous lithium cells. LiVTiO4 is a member of the general series, LiMTiO4 where M represents a 3d transition metal and was synthesized by a simple solid-state ceramic approach involving lithium carbonate, V2O3 and TiC2. The lithium insertion behavior in the LiVTiO4 relies on the reversibility of the V3+/V4+ redox couple and preliminary electrochemical evaluation indicates a reversible specific capacity of around 90 mA h/g, which represents the cycling of just over half the available lithium in the structure. High-resolution measurements reveal a structureless and sloping voltage profile consistent with the lithium insertion reactions proceeding via a single-phase mechanism. The lithium extraction and insertion reactions are located at 3.16 and 2.85 V vs. Li, respectively, while the symmetrical nature of the differential capacity data confirms the electrochemical reversibility. By comparison, the structurally related LiCrTiO4 phase demonstrates redox activity in the potential range 4.5-4.8 V vs. Li, although this behavior is accompanied by significant irreversibility. Constant current cycling of representative Li//LiVTiO4 cells indicates moderate insertion stability characterized by about 15% capacity fade over the initial 20 cycles. (C) 2003 Elsevier B.V. All rights reserved.
机译:已在非水锂电池中评估了新型尖晶石相钛酸钒钛酸锂LiVTiO4(Fd3m,a = 8.236(A)的电化学插入特性)。 LiVTiO4是一般系列的成员,其中M代表3d过渡金属,并且是通过简单的固态陶瓷方法(包括碳酸锂,V2O3和TiC2)合成的。 LiVTiO4中锂的插入行为取决于V3 + / V4 +氧化还原对的可逆性,初步的电化学评估表明可逆比容量约为90 mA h / g,这表示结构中超过一半的可用锂循环。高分辨率测量显示出无结构且倾斜的电压曲线,与通过单相机理进行的锂插入反应一致。锂的萃取和插入反应分别位于相对于Li的3.16 V和2.85 V处,而差分电容数据的对称性质证实了电化学可逆性。相比之下,与结构相关的LiCrTiO4相在相对于Li的电位范围为4.5-4.8 V时显示出氧化还原活性,尽管这种行为伴随着明显的不可逆性。代表性Li // LiVTiO4电池的恒定电流循环表明中等的插入稳定性,其特征是在最初的20个循环中容量衰减约15%。 (C)2003 Elsevier B.V.保留所有权利。

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