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用于卓越锂电池性能且锂含量显著降低的硬碳和基于LiTiO的物理混合阳极:协同材料合作的一个实例

Hard Carbon and LiTiO-Based Physically Mixed Anodes for Superior Li-Battery Performance with Significantly Reduced Li Content: A Case of Synergistic Materials Cooperation.

作者信息

Sharma Neha, Puthusseri Dhanya, Thotiyl Musthafa Ottakam, Ogale Satishchandra

机构信息

Department of Chemistry and Centre for Energy Science and Department of Physics and Centre for Energy Science, Indian Institute of Science Education and Research (IISER), Pune, Dr. Homi Bhabha Road, Pashan, Pune 411008, India.

出版信息

ACS Omega. 2017 Dec 11;2(12):8818-8824. doi: 10.1021/acsomega.7b01659. eCollection 2017 Dec 31.

Abstract

LiTiO (LTO) and hard carbon (HC) are commonly used anodes in the Li-ion batteries. LTO has an operating voltage of 1.55 V and exhibits high-rate performance but with limited capacity. HC has high specific capacity but extremely low operating voltage. Herein, we show that a simple physical mixture of the two enhances the half-cell as well as full-cell performance through a synergistic cooperation between the materials. Specifically, the LTO-HC mixed anodes exhibit impressive performance even at high C-rates. This results from a quick internalization of Li ions by LTO followed by their distribution to HC regions via the high density of the winding internal interfaces between the two. The full cells of the LTO-HC mixed anodes with LiCoO (LCO) evince an enhanced operating voltage window and a well-defined plateau. Because of a reduced irreversible capacity loss in the LCO/mixed anode full cells, the overall specific capacity is better than the LCO/pristine anode full cells. Also, with the LTO-HC 20-80 anode (Li content reduced by 80%), the full cell exhibits an impressive performance when compared to pristine anodes without pre-lithiation. The LCO/mixed anode full cells have excellent cycling stability up to 500 cycles at a current density of 100 mA g.

摘要

锂钛氧化物(LTO)和硬碳(HC)是锂离子电池中常用的负极材料。LTO的工作电压为1.55 V,具有高倍率性能,但容量有限。HC具有高比容量,但工作电压极低。在此,我们表明,这两种材料的简单物理混合物通过材料之间的协同合作提高了半电池以及全电池的性能。具体而言,LTO-HC混合负极即使在高C倍率下也表现出令人印象深刻的性能。这是由于LTO对锂离子的快速内化,随后锂离子通过两者之间高密度的缠绕内部界面分布到HC区域。LTO-HC混合负极与LiCoO(LCO)组成的全电池表现出增强的工作电压窗口和明确的平台。由于LCO/混合负极全电池中不可逆容量损失的减少,整体比容量优于LCO/原始负极全电池。此外,对于LTO-HC 20-80负极(锂含量降低80%),与未预锂化的原始负极相比,全电池表现出令人印象深刻的性能。LCO/混合负极全电池在100 mA g的电流密度下具有高达500次循环的出色循环稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb89/6645524/11a1f4dac161/ao-2017-016596_0001.jpg

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