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Ab initio study of mechanical strength of solid polymer electrolyte (PEO)(5)LiClO4

机译:AB Initio固体聚合物电解质机械强度的研究(PEO)(5)LICLO4

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摘要

Mechanical strength is one of the significant properties of any solid polymer electrolyte of electrochemical devices, therefore; the ab initio study based on density functional theory is performed, and the bond strength of Poly ethylene oxide (PEO)(5) polymer without and with Lithium Perchlorate (LiClO4) is investigated. The central oxygen atom of PEO is displaced till to respective bond is broken along X, Y, and Z directions, respectively. The same is simulated in the presence of LiClO4 and the minimum bond breaking energy which is also called the mechanical strength is calculated along three directions. Higher energy is required in compression of (PEO)(5) along x and y axes than expansion, and vice versa along z axis. The same is observed for (PEO)(5)-LiClO4 polymer electrolyte along x and y axes, along z direction; the energy required is nearly same for compression/expansion. Due to this energy, crystalline nature of a polymer is reduced and amorphous nature is increased. In DOS analysis, the forbidden energy gap of (PEO)(5)-LiClO4 is reduced by 1.0 eV than (PEO)(5); it causes to increase the lithium cation concentration and the ionic conductivity.
机译:机械强度是电化学器件的任何固体聚合物电解质的显着性质之一;研究了基于密度官能理论的AB初始研究,研究了聚环氧乙烷(PEO)(5)聚合物的粘接强度,与高氯酸锂(LiClO4)进行了含量。 PEO的中央氧原子分别移位到相应的键分别沿x,y和z方向分别断开。在LiCLO4的存在下模拟相同,并且还沿三个方向计算也称为机械强度的最小键合能量。在沿x和y轴压缩(PEO)(5)中需要更高的能量而不是膨胀,反之亦然沿Z轴。沿Z方向观察到(PEO)(5)-LICLO4聚合物电解质,沿Z方向观察到该相同;对于压缩/扩展,所需的能量几乎相同。由于这种能量,降低了聚合物的结晶性质,并且增加了无定形性质。在DOS分析中,(PEO)(5)-LICLO4的禁止能隙比(PEO)(5)减少1.0eV;它导致增加锂阳离子浓度和离子电导率。

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  • 来源
    《Ionics》 |2017年第10期|共6页
  • 作者单位

    Shri Shankaracharya Tech Campus FET SSGI Dept Appl Phys Computat Nanoion Res Lab Bhilai 490020 Chhattisgarh India;

    Shri Shankaracharya Tech Campus FET SSGI Dept Appl Phys Computat Nanoion Res Lab Bhilai 490020 Chhattisgarh India;

    Uday Prasad Govt Polytech Durg Chhattisgarh India;

    Shri Shankaracharya Tech Campus FET SSGI Dept Appl Phys Computat Nanoion Res Lab Bhilai 490020 Chhattisgarh India;

    Shri Shankaracharya Tech Campus FET SSGI Dept Appl Phys Computat Nanoion Res Lab Bhilai 490020 Chhattisgarh India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 等离子体物理学;
  • 关键词

    Density functional theory; Siesta; Simulation; Density of states;

    机译:密度函数理论;午睡;模拟;状态密度;

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