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Electrode Based on Oxyphosphates as Anode Materials for High Energy Density Lithium-ion Batteries

机译:基于氧磷酸盐作为高能量密度锂离子电池的阳极材料

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Lithium-ion batteries (Li-ion) are interesting devices for electrochemical energy storage for most emerging green technologies such as wind and solar technologies or hybrid and plug-in electric vehicles or for classical electrical devices such as laptops, phones or other electronic tools. Nevertheless, the oxygen release at high potentials in the present commercialized electrode materials (e.g. LiCoO2) leads to high thermal instability of these oxides and thus to many safety problems. This safety problem is more pronounced for stationary applications for which large size batteries were needed. Polyanionic materials in general, and particularly phosphates were well renowned by their high structural stability which are essential to overcome the above mentioned safety issue. Here, we present the structural and the electrochemical performances of three oxyphosphates M_(0.5)TiOPO4 (M: Ni, Co, Fe). More than 300 mAh/g discharge capacity could be delivered by these phosphates under relatively high cycling rate. The lithium insertion/extraction mechanism is composed from an intercalation process for low lithium content to a conversion mechanism for higher lithium concentration leading to the extrusion of the transition metal M from the structure.
机译:锂离子电池(LI-ION)是用于大多数新兴绿色技术的电化学能量储存的有趣装置,如风和太阳能技术或混合动力和插入电动车辆,或者是诸如笔记本电脑,电话或其他电子工具的经典电气设备。然而,本发明的商业化电极材料(例如LiCoO2)的高电位下的氧气释放导致这些氧化物的高热不稳定性,从而导致许多安全问题。对于需要大尺寸电池的固定应用,此安全问题更为明显。多阴离子材料一般,特别是磷酸盐很好地通过其高结构稳定性而闻名,这对于克服上述安全问题至关重要。在这里,我们介绍了三种梭磷酸盐M_(0.5)TioPo4(M:Ni,Co,Fe)的结构和电化学性能。在相对高的循环速率下,这些磷酸盐可以通过这些磷酸盐提供超过300mAh / g的放电容量。锂插入/萃取机构由用于低锂含量的嵌入方法与转化机构的嵌入方法组成,用于较高的锂浓度导致过渡金属M从结构中挤出。

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