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Effect of Mil-88a metal-organic framework coating on the electrochemical properties of LiCoPO4

机译:Mil-88a金属有机骨架涂层对LiCoPO4电化学性能的影响

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摘要

? 2022Towards solving the poor electrochemical performance of LiCoPO4 as a cathode in Lithium-ion batteries, here we propose a novel durable one-pot technique. Mil-88a metal-organic framework (MOF) nanoparticles have been incorporated through LiCoPO4 synthesis to form a metal-carbon layer after calcination. The structure of our novel cathode has been investigated using XRD, XRF, and TEM. The TEM images showed that the increase in the concentration of Mil-88a to 3 and annealed under air led to forming of a homogeneously distributed shell layer from porous carbon and doped with iron oxide nanoparticles (10–40 nm). The X-ray photoelectron spectra of LiCoPO4@Mil-88a verifies the presence of a Fe-rich surface layer on the nanoparticle surface of LiCoPO4. The electrochemical studies assured that the 1st cycle yielded a discharge-specific capacity of 138 mAhg?1. The Mil-88a MOF is a basis for metal atoms and carbon, increasing the bulk conductivity.
机译:?2022为了解决LiCoPO4作为锂离子电池正极电化学性能差的问题,本文提出了一种新型的耐久一锅技术。Mil-88a金属有机框架(MOF)纳米颗粒通过LiCoPO4合成掺入,在煅烧后形成金属碳层。我们的新型阴极的结构已经使用XRD、XRF和TEM进行了研究。透射电镜图像显示,Mil-88a的浓度增加到3%,并在空气下退火,导致多孔碳形成均匀分布的壳层,并掺杂氧化铁纳米颗粒(10-40 nm)。LiCoPO4@Mil-88a的X射线光电子能谱验证了LiCoPO4纳米颗粒表面存在富铁表面层。电化学研究证实,第1次循环产生的放电比容量为138 mAhg?1。Mil-88a MOF是金属原子和碳的基础,可提高体积电导率。

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