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首页> 外文期刊>Applied Surface Science >Nanoscale alpha-MnS crystallites grown on N-S co-doped rGO as a long-life and high-capacity anode material of Li-ion batteries
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Nanoscale alpha-MnS crystallites grown on N-S co-doped rGO as a long-life and high-capacity anode material of Li-ion batteries

机译:在N-S共掺杂的rGO上生长的纳米级α-MnS微晶作为锂离子电池的长寿命和高容量阳极材料

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摘要

The rock-salt structural manganous sulfide (alpha-MnS) is of higher lithium storage capacity. To improve the cyclability of alpha-MnS anode in lithium-ion batteries, we prepared a composite of alpha-MnS nanocrystallites grown on nitrogen and sulfur co-doped reduced graphene oxide (rGO) honeycomb framework. N and S atoms have been co-doped into rGO along with the growth of the alpha-MnS nanocystallites by a one-pot hydrothermal synthesis using thiourea as dopant and reactant. The typical alpha-MnS/Nsingle bondS co-doped rGO (NSG) composite electrode exhibits a reversible capacity as high as 763.5 mAh g(-1) after 100 cycles at 100 mA g(-1), and a reversible capacity of 576.7 mAh g(-1) even after 2000 cycles at 1000 mA g(-1). More importantly, the alpha-MnS/NSG composite electrodes show superior cycle performance at asymmetric discharge/charge current densities. The excellent electrochemical performance can be attributed to that the alpha-MnS nanocrystallites shorten lithium ion transmission distance, N-S co-doping improves the electronic conductivity of rGO, and the formation of chemical bonds combination between alpha-MnS and NSG enhances the electrode structural stability and the electron transport. In addition, more stable architecture of NSG-supported ultrafine alpha-MnS particles is formed upon cycling, which greatly enhances the electrical contact and further improves the electrochemical performance. (C) 2017 Elsevier B.V. All rights reserved.
机译:岩盐结构硫化锰(α-MnS)具有更高的锂存储容量。为了提高锂离子电池中α-MnS阳极的可循环性,我们制备了在氮和硫共掺杂的还原氧化石墨烯(rGO)蜂窝状骨架上生长的α-MnS纳米微晶复合物。通过使用硫脲作为掺杂剂和反应物的一锅式水热合成,已将N和S原子与α-MnS纳米囊藻土的生长一起共掺杂到rGO中。典型的α-MnS/ NingleS掺杂的rGO(NSG)复合电极在100 mA g(-1)循环100次后表现出高达763.5 mAh g(-1)的可逆容量和576.7 mAh的可逆容量即使在1000 mA g(-1)的2000次循环后仍达到g(-1)。更重要的是,α-MnS/ NSG复合电极在不对称的放电/充电电流密度下显示出优异的循环性能。优异的电化学性能可以归因于α-MnS纳米晶体缩短了锂离子的传输距离,NS共掺杂提高了rGO的电子电导率,并且α-MnS和NSG之间化学键组合的形成增强了电极的结构稳定性和稳定性。电子传输。此外,在循环时形成了由NSG负载的超细α-MnS颗粒的更稳定的结构,这大大增强了电接触并进一步改善了电化学性能。 (C)2017 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Applied Surface Science 》 |2017年第15期| 858-867| 共10页
  • 作者单位

    Lanzhou Univ, Minist Educ, Key Lab Magnetism & Magnet Mat, Sch Phys Sci & Technol, Lanzhou 730000, Peoples R China;

    Lanzhou Univ, Minist Educ, Key Lab Magnetism & Magnet Mat, Sch Phys Sci & Technol, Lanzhou 730000, Peoples R China;

    Lanzhou Univ, Minist Educ, Key Lab Magnetism & Magnet Mat, Sch Phys Sci & Technol, Lanzhou 730000, Peoples R China;

    Lanzhou Univ, Minist Educ, Key Lab Magnetism & Magnet Mat, Sch Phys Sci & Technol, Lanzhou 730000, Peoples R China;

    Lanzhou Univ, Minist Educ, Key Lab Magnetism & Magnet Mat, Sch Phys Sci & Technol, Lanzhou 730000, Peoples R China;

    Lanzhou Univ, Minist Educ, Key Lab Magnetism & Magnet Mat, Sch Phys Sci & Technol, Lanzhou 730000, Peoples R China;

    Lanzhou Univ, Minist Educ, Key Lab Magnetism & Magnet Mat, Sch Phys Sci & Technol, Lanzhou 730000, Peoples R China;

    Lanzhou Univ, Minist Educ, Key Lab Magnetism & Magnet Mat, Sch Phys Sci & Technol, Lanzhou 730000, Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    alpha-MnS nanocrystallites; N-S co-doped rGO; Chemical bonds combination; Anode material; Long-life cycling;

    机译:α-MnS纳米微晶;N-S共掺杂rGO;化学键结合;阳极材料;长寿命循环;

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