首页> 外文OA文献 >Synthèse et étude du composé Li4Ti5O12 comme électrode négative dans les accumulateurs Li-ion
【2h】

Synthèse et étude du composé Li4Ti5O12 comme électrode négative dans les accumulateurs Li-ion

机译:锂离子电池负极材料Li4Ti5O12的合成与研究

摘要

Electrical energy consumption has increased dramatically and its mode of consumption has diversified over the years, with the development of mobile energy storage devices such as lithium batteries. The present thesis is dedicated to the synthesis and study of the compound Li4Ti5O12 as negative electrode in Li-ion batteries. The main objective is the development of innovative synthesis techniques based on soft chemistry in order to control and study the effect of structural and microstructural parameters on the electrochemical properties of the compound.Because of its ability to intercalate/deintercalate Li+ ions in its structure without stress-generating volume changes of the structure, Li4Ti5O12 is considered as a so-called "zero-strain" electrode, favouring excellent cycling performance. Therefore, this compound appeared to us a most interesting candidate in this study.The first part of this work investigates a method involving the freeze-drying of a gel precursor followed by self-ignition. Hydroxypropylmethylcellulose is used as an additive and the synthesis of Li4Ti5O12 takes place in four steps : Gelling – Freeze-drying – self-ignition – Calcination. Ammonium nitrate was also added to the reactants to determine the impact on the self-ignition process and the consequences on the structure, microstructure and electrochemical properties of the compound. Indeed, a major issue usually encountered in self-ignition is controlling the amount of heat released, and therefore the temperature during self-ignition. These factors greatly influence the structural and microstructural properties of the compound. The results show that addition of ammonium nitrate leads to an excessive crystal growth which is unfavorable to electrochemical properties of the compound.In the second part of the thesis, the spray-drying method has been investigated using both a lab-scale and a pilot-scale equipment, to take into account possible developments on an industrial scale. For both devices, the influence of concentration on particle morphology was observed. The lab spray-dryer allowed us to obtain a convex to mushroom morphology. For the pilot spray-dryer, the morphologies vary from cauliflower to smooth hollow spheres, and can be further modified by addition of a carbonate source which decomposes during calcination. Depending on the particle morphology and its surface for intercalation of Li+ ions, the electrochemical performances have been improved, sometimes considerably. The drying temperature also affects the performance of the compound through the agglomeration rate of the particles.In conclusion, a wide panel of microstructures has been obtained by investigating two synthesis methods with various sets of experimental conditions. Although all these powders are Li4Ti5O12, there is a significant variation of their electrochemical performance and we have attempted to correlate these with particle morphology. Some prominsing results have been obtained and suggest that performance can be further improved through future work, on both fundamental and applied aspects.
机译:近年来,随着锂电池等移动储能装置的发展,电能的消耗量急剧增加,其消耗方式多样化。本论文致力于锂离子电池负极材料Li4Ti5O12的合成与研究。主要目的是开发基于软化学的创新合成技术,以控制和研究结构和微结构参数对化合物电化学性能的影响。由于其能够在结构中无应力地嵌入/脱嵌Li +离子为了产生结构的体积变化,Li 4 Ti 5 O 12被认为是所谓的“零应变”电极,有利于优异的循环性能。因此,这种化合物对我们来说是这项研究中最有趣的候选物。这项工作的第一部分研究了一种方法,该方法涉及冻干凝胶前体,然后进行自燃。羟丙基甲基纤维素用作添加剂,Li4Ti5O12的合成分四个步骤进行:胶凝–冷冻干燥–自燃–煅烧。还向反应物中添加硝酸铵,以确定对自燃过程的影响以及对化合物的结构,微结构和电化学性质的影响。实际上,自燃中通常遇到的主要问题是控制释放的热量,从而控制自燃过程中的温度。这些因素极大地影响了化合物的结构和微观结构性质。结果表明,添加硝酸铵会导致过度的晶体生长,这不利于该化合物的电化学性能。在论文的第二部分中,已经使用实验室规模和中试方法对喷雾干燥方法进行了研究。规模的设备,以考虑到工业规模的可能发展。对于这两种设备,均观察到浓度对颗粒形态的影响。实验室喷雾干燥器使我们获得了蘑菇形的凸面。对于中试喷雾干燥器,其形态从花椰菜到光滑的空心球不等,并且可以通过添加在煅烧过程中分解的碳酸盐源进行进一步修饰。取决于粒子形态及其用于嵌入Li +离子的表面,电化学性能已得到改善,有时会大大提高。干燥温度还通过颗粒的团聚速率影响化合物的性能。总之,通过研究在各种实验条件下的两种合成方法,已经获得了广泛的微观结构。尽管所有这些粉末都是Li4Ti5O12,但它们的电化学性能存在显着差异,我们已尝试将其与颗粒形态相关联。已经获得了一些令人瞩目的结果,并表明可以通过未来的工作在基础和应用方面进一步提高性能。

著录项

  • 作者

    Jamin, Claire;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 fr
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号