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Synergic Effect of Niobium Doping and Carbon Coating on the Performance of a Li_2ZnTi_3O_8 Anode Candidate for Lithium Ion Batteries

机译:铌掺杂和碳涂层对锂离子电池Li_2Znti_3O_8阳极候选性能的协同作用

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摘要

This study designates the outcomes of niobium doping and carbon coating on the structural and electrochemical performance of Li_(2)ZnTi_(3)O_(8) as an anode electrode for use in Li-ion batteries. Nb-doped, carbon-coated Li_(2)ZnTi_(2.95)Nb_(0.05)O_(8)/C (LZTO-2) and pristine Li_(2)ZnTi_(3)O_(8) (LZTO-1) anode materials were synthesized using facile sonication-assisted solid-state synthesis using sucrose as the carbon source. The synthesized materials are characterized using X-ray diffraction (XRD), Raman spectroscopy, scanning electron microscopy (SEM), and transmission electron microscopy (TEM). Electrochemical investigations are carried out using galvanostatic cycling, cyclic voltammetry (CV), and electrochemical impedance spectroscopy (EIS). Structural analysis shows that the synthesized materials crystallize in the iP 4_(3)32 space group. It is observed through these studies that Nb doping (5%) and carbon (10%) coating have improved significantly the electrochemical performance of the (LZTO-2) as compared to (LZTO-1). LZTO-2 exhibits excellent cyclic performance and specific capacity (mA h g~(–1)) at all C-rates. The excellent specific capacity of LZTO-2 at higher C-rates (5C, 10C, 20C, and 30C), i.e., 156, 135, 113, and 77 mA h g~(–1), respectively, as compared to LZTO-1, i.e., 127, 89, 48, and 26 mA h g~(–1), respectively, can be attributed to low charge transfer resistance resulting from having the proper amount of dopant and carbon content. Higher specific capacities, low charge transfer resistance, and higher values of Li-ion diffusion coefficient indicate that LZTO-2 is a magnificent anode electrode for commercial Li-ion batteries.
机译:本研究指定铌掺杂和碳涂层的结果,用于Li_(2)ZnTi_(3)O_(8)作为用于锂离子电池的阳极电极的结构和电化学性能。 NB掺杂,碳涂层Li_(2)ZnTi_(2.95)NB_(0.05)O_(8)/ c(LZTO-2)和原始LI_(2)ZnTi_(3)O_(LZTO-1)阳极使用蔗糖作为碳源,使用容易超声辅助固态合成合成材料。合成材料的特征在于使用X射线衍射(XRD),拉曼光谱,扫描电子显微镜(SEM)和透射电子显微镜(TEM)。使用Galvanostatic循环,循环伏安法(CV)和电化学阻抗光谱(EIS)进行电化学研究。结构分析表明,合成材料在 P 4_(3)32空间组中结晶。通过这些研究观察到与(LZTO-1)相比,Nb掺杂(5%)和碳(10%)涂层具有显着改善(LZTO-2)的电化学性能。 LZTO-2在所有C率下表现出优异的循环性能和特定容量(MA H G〜(-1))。与LZTO-1相比,分别在较高的C速率(5C,10C,20℃和30℃),即156,135,113和77mA Hg〜(-1)下的优异特定容量,即127,89,48和26mA Hg〜(-1)分别可以归因于具有适当量的掺杂剂和碳含量的低电荷转移电阻。较高的特定容量,低电荷传递电阻和较高值的锂离子扩散系数表明LZTO-2是用于商用锂离子电池的宏伟阳极电极。

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  • 来源
    《Energy & fuels》 |2020年第11期|14968-14974|共7页
  • 作者单位

    Department of Chemistry Allama Iqbal Open University|Department of Energy Conversion and Storage Technical University of Denmark;

    Department of Chemistry Allama Iqbal Open University;

    Department of Energy Conversion and Storage Technical University of Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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