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Electrode materials for lithium secondary batteries prepared by sol-gel methods

机译:溶胶凝胶法制备的锂二次电池用电极材料

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Since the commercialization of lithium secondary batteries in the early of 1990s, their development has been rapid. Nowadays, improving the preparation technology and electrochemical performance of their electrode materials is a major focus in research and development of the materials, power sources and chemistry. Sol-gel methods are a promising way to prepare electrode materials due to their evident advantages over traditional methods, for example, homogeneous mixing at the atomic or molecular level, lower synthesis temperature, shorter heating time, better crystallinity, uniform particle distribution and smaller particle size at nanometer level. In this paper, latest progress in the preparation of electrode materials by sol-gel methods is reviewed, including cathodic ones, e.g., lithium cobalt oxides, lithium nickel oxides, spinel and layered lithium manganese oxides, vanadium oxides and ferrous phosphates, and anodic ones, e.g., tin oxides and titanium oxides. Compared with those prepared by traditional solid-state reaction, the structure stability of the prepared electrode materials and the behavior of lithium intercalation and de-intercalation are much improved. As a result, the prepared products provide better electrochemical performance including reversible capacity, cycling behavior and rate capability. In addition, sol-gel methods can be used to prepare new kinds of electrode materials such as nanowires of LiCoO_2 and nanotubes of V_2O_5, which cannot be easily created by the traditional methods. Further development and application of sol-gel methods will bring about new and better electrode materials, meaning a great promotion to lithium secondary batteries.
机译:自从1990年代初锂二次电池商业化以来,其发展迅速。如今,改进其电极材料的制备技术和电化学性能已成为材料,电源和化学研究与开发的主要重点。溶胶-凝胶法由于其相对于传统方法的明显优势而成为制备电极材料的有前途的方法,例如,在原子或分子水平上均匀混合,较低的合成温度,较短的加热时间,更好的结晶度,均匀的颗粒分布和较小的颗粒纳米级的尺寸。本文综述了溶胶-凝胶法制备电极材料的最新进展,包括阴极材料,例如锂钴氧化物,锂镍氧化物,尖晶石和层状锂锰氧化物,钒氧化物和磷酸亚铁以及阳极材料。例如氧化锡和氧化钛。与传统的固态反应制备的相比,制备的电极材料的结构稳定性以及锂嵌入和脱嵌的行为得到了很大的改善。结果,所制备的产品提供了更好的电化学性能,包括可逆容量,循环行为和速率能力。另外,溶胶-凝胶法可用于制备新型电极材料,如LiCoO_2的纳米线和V_2O_5的纳米管,这是传统方法难以轻易产生的。溶胶-凝胶法的进一步发展和应用将带来新的更好的电极材料,这将极大地促进锂二次电池的发展。

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