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首页> 外文期刊>ACS applied materials & interfaces >Polymer-Templated LiFePO4/C Nanonetworks as High-Performance Cathode Materials for Lithium-Ion Batteries
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Polymer-Templated LiFePO4/C Nanonetworks as High-Performance Cathode Materials for Lithium-Ion Batteries

机译:聚合物模板LiFePO4 / C纳米纳米纳米型工厂作为锂离子电池的高性能阴极材料

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Lithium iron phosphate (LFP) is currently one of the main cathode materials used in lithium-ion batteries due to its safety, relatively low cost, and exceptional cycle life. To overcome its poor ionic and electrical conductivities, LFP is often nanostructured, and its surface is coated with conductive carbon (LFP/C). Here, we demonstrate a sol-gel based synthesis procedure that utilizes a block copolymer (BCP) as a templating agent and a homopolymer as an additional carbon source. The high-molecular-weight BCP produces self-assembled aggregates with the precursor-sol on the 10 nm scale, stabilizing the LFP structure during crystallization at high temperatures. This results in a LFP nanonetwork consisting of interconnected similar to 10 nm-sized particles covered by a uniform carbon coating that displays a high rate performance and an excellent cycle life. Our "one-pot" method is facile and scalable for use in established battery production methodologies.
机译:磷酸铁锂(LFP)目前是锂离子电池中使用的主要阴极材料之一,由于其安全性,相对较低的成本和特殊的循环寿命。 为了克服其差的离子和电导率,LFP通常是纳米结构的,其表面涂有导电碳(LFP / C)。 这里,我们证明了一种基于溶胶 - 凝胶的合成方法,其利用嵌段共聚物(BCP)作为模板剂和均聚物作为额外的碳源。 高分子重量BCP在10nm刻度上产生具有前体 - 溶胶的自组装聚集体,在高温下结晶期间稳定LFP结构。 这导致LFP纳米纳米纳米纳米纳米纳米纳米纳米纳米纳米,其包括与由均匀碳涂层覆盖的10nm尺寸的颗粒组成,该碳涂层显示出高速率性能和优异的循环寿命。 我们的“单罐”方法适用于既定的电池生产方法。

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