首页> 外文期刊>Applied Surface Science >New chemical approach to obtain dense layer phosphate-based ionic conductor coating on negative electrode material surface: Synthesis way, outgassing and improvement of C-rate capability
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New chemical approach to obtain dense layer phosphate-based ionic conductor coating on negative electrode material surface: Synthesis way, outgassing and improvement of C-rate capability

机译:在负极材料表面获得致密层磷酸盐基离子导体涂层的新化学方法:合成方法,除气和提高C速率能力

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摘要

Li4Ti5O12 (LTO) based batteries have severe gassing behavior during charge/discharge and storage process, due to interfacial reactions between active material and electrolyte solution. In the same time, the electronic and ionic conductivity of pristine LTO is very poor and induces the use of nanoparticles which increase the outgassing phenomena. The coating of LTO particles could be a solution. For this the LTO spinel particles are modified with ionic conductor Li3PO4 coating using a spray-drying method. For the first time a homogeneous thin dense layer phosphate based conductor is obtained without nanoparticles, as a thin film material. It is so possible to study the influence of ionic conductor deposited on the negative electrode material on performances by the controlled layer thickness. This coating was characterized by XRD, SEM, XPS and TEM. The electrochemical performance of Li3PO4 coated Li4Ti5O12 is improved at high C-rate by the surface modification (improvement of 30 mAh g(-1) at 5 C-rate compared to pristine LTO for 5 nm of coating), inducing by a modification of surface energy. An optimum coating thickness was studied. This type of coating allows a significant decrease of outgassing phenomena due the conformal coating and opens the way to a great number of studies and new technologies. (C) 2016 Elsevier B.V. All rights reserved.
机译:基于Li4Ti5O12(LTO)的电池由于活性材料和电解质溶液之间的界面反应,在充电/放电和存储过程中具有严重的放气行为。同时,原始LTO的电子和离子电导率非常差,并且导致使用纳米颗粒,这增加了脱气现象。 LTO颗粒的涂层可以是溶液。为此,LTO尖晶石颗粒使用喷雾干燥法用离子导体Li3PO4涂层改性。首次获得了没有纳米颗粒的均质薄致密层磷酸盐基导体,作为薄膜材料。因此可以通过控制层厚来研究沉积在负极材料上的离子导体对性能的影响。该涂层通过XRD,SEM,XPS和TEM表征。通过表面改性(在5 C速率下与原始LTO相比,在5 C速率下提高了30 mAh g(-1),在5 C速率下提高了Li3PO4涂覆的Li4Ti5O12的电化学性能)能源。研究了最佳的涂层厚度。这种涂层可以显着减少由于保形涂层引起的脱气现象,并为大量的研究和新技术开辟了道路。 (C)2016 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Applied Surface Science》 |2017年第1期|139-147|共9页
  • 作者单位

    Univ Picardie Jules Verne, CNRS UMR 7314, Lab React & Chim Solides, 33 Rue St Leu, F-80039 Amiens, France|CNRS, Reseau Sur Stockage Electrochim Energie RS2E, FR3459, F-75700 Paris, France;

    Univ Picardie Jules Verne, CNRS UMR 7314, Lab React & Chim Solides, 33 Rue St Leu, F-80039 Amiens, France|CNRS, Reseau Sur Stockage Electrochim Energie RS2E, FR3459, F-75700 Paris, France;

    Univ Picardie Jules Verne, CNRS UMR 7314, Lab React & Chim Solides, 33 Rue St Leu, F-80039 Amiens, France|CNRS, Reseau Sur Stockage Electrochim Energie RS2E, FR3459, F-75700 Paris, France;

    Univ Picardie Jules Verne, CNRS UMR 7314, Lab React & Chim Solides, 33 Rue St Leu, F-80039 Amiens, France|CNRS, Reseau Sur Stockage Electrochim Energie RS2E, FR3459, F-75700 Paris, France;

    Univ Picardie Jules Verne, CNRS UMR 7314, Lab React & Chim Solides, 33 Rue St Leu, F-80039 Amiens, France|CNRS, Reseau Sur Stockage Electrochim Energie RS2E, FR3459, F-75700 Paris, France;

    Univ Picardie Jules Verne, CNRS UMR 7314, Lab React & Chim Solides, 33 Rue St Leu, F-80039 Amiens, France|CNRS, Reseau Sur Stockage Electrochim Energie RS2E, FR3459, F-75700 Paris, France;

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

    Coating materials; Spray-drying; Electrochemistry; Dense layer; Energy;

    机译:涂料;喷雾干燥;电化学;致密层;能量;

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