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Sol-gel derived lithium iron phosphate films for efficient lithium-ion intercalation

机译:溶胶 - 凝胶衍生铁磷酸铁膜,用于高效锂离子嵌入

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Sol-gel derived nanostructured LiFePO_4 films with controlled crystallinity and a small fraction of carbon uniformly dispersed have been fabricated and studied as cathodes for efficient lithium-ion intercalation. With appropriate control of micro-, nano- and crystal structures and surface chemistry, both high specific energy and specific power are readily achieved. For example, at a current density of 200mA/g, LiFePO_4 films demonstrated an initial lithium-ion intercalation capacity of 312 mAh/g, and 218mAh/g after 20 cycles, far exceeding the theoretical storage capacity of conventional LiFePO_4 electrode. The relationship between the processing condition, controlled impurities and defects, micro-, nano-, and crystal structures and the lithium-ion intercalation properties are discussed and possible mechanisms for high lithium-ion intercalation have been proposed.
机译:具有受控结晶度的溶胶 - 凝胶衍生的纳米结构LiFePO_4薄膜和均匀分散的均匀分散的碳均匀的碳均匀,并研究作为高效锂离子嵌入的阴极。通过适当地控制微型,纳米和晶体结构和表面化学,容易实现高特定能量和特定功率。例如,在电流密度为200mA / g,LifePO_4薄膜在20次循环之后展示了312mAh / g的初始锂离子嵌入容量,而218mAh / g,远远超过常规LiFepo_4电极的理论储存能力。讨论了加工条件,受控杂质和缺陷,微观,纳米和晶体结构和锂离子嵌入性质之间的关系,并提出了高锂离子嵌入的可能机制。

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