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用于锂离子电池的尺寸可调天然矿物-辉钼矿:增强存储容量并加快离子传输

Size-Tunable Natural Mineral-Molybdenite for Lithium-Ion Batteries Toward: Enhanced Storage Capacity and Quicken Ions Transferring.

作者信息

Jiang Feng, Li Sijie, Ge Peng, Tang Honghu, Khoso Sultan A, Zhang Chenyang, Yang Yue, Hou Hongshuai, Hu Yuehua, Sun Wei, Ji Xiaobo

机构信息

School of Minerals Processing and Bioengineering, Central South University, Changsha, China.

College of Chemistry and Chemical Engineering, Central South University, Changsha, China.

出版信息

Front Chem. 2018 Aug 28;6:389. doi: 10.3389/fchem.2018.00389. eCollection 2018.

Abstract

Restricted by the dissatisfied capacity of traditional materials, lithium-ion batteries (LIBs) still suffer from the low energy-density. The pursuing of natural electrode resources with high lithium-storage capability has triggered a plenty of activities. Through the hydro-refining process of raw molybdenite ore, containing crushing-grinding, flotation, exfoliation, and gradient centrifugation, 2D molybdenum disulfide (MoS) with high purity is massively obtained. The effective tailoring process further induce various sizes (5, 2, 1 and 90 nm) of sheets, accompanying with the increasing of active sites and defects. Utilized as LIB anodes, size-tuning could serve crucial roles on the electrochemical properties. Among them, MoS-1 μm delivers an initial charge capacity of 904 mAh g, reaching up to 1,337 mAh g over 125 loops at 0.1 A g. Even at 5.0 A g, a considerable capacity of 682 mAh g is remained. Detailedly analyzing kinetic origins reveals that size-controlling would bring about lowered charge transfer resistance and quicken ions diffusion. The work is anticipated to shed light on the effect of different MoS sheet sizes on Li-capacity ability and provides a promising strategy for the commercial-scale production of natural mineral as high-capacity anodes.

摘要

受限于传统材料的性能不佳,锂离子电池(LIBs)的能量密度仍然较低。对具有高储锂能力的天然电极资源的追求引发了大量相关研究。通过对辉钼矿原矿进行包括破碎研磨、浮选、剥离和梯度离心在内的水热精炼过程,可大量获得高纯度的二维二硫化钼(MoS₂)。有效的剪裁工艺进一步诱导出各种尺寸(5、2、1和90纳米)的薄片,同时活性位点和缺陷也有所增加。用作LIB阳极时,尺寸调控对电化学性能起着关键作用。其中,1微米的MoS₂初始充电容量为904 mAh g,在0.1 A g的电流下经过125个循环后可达1337 mAh g。即使在5.0 A g的电流下,仍能保持682 mAh g的可观容量。详细分析动力学起源表明,尺寸控制会降低电荷转移电阻并加快离子扩散。这项工作有望揭示不同尺寸的MoS₂薄片对锂存储能力的影响,并为天然矿物作为高容量阳极的商业化规模生产提供一种有前景的策略。

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