首页> 外国专利> Method for coating carbon on lithium titanium oxide-based anode active material nanoparticles and carbon-coated lithium titanium oxide-based anode active material nanoparticles produced by the method

Method for coating carbon on lithium titanium oxide-based anode active material nanoparticles and carbon-coated lithium titanium oxide-based anode active material nanoparticles produced by the method

机译:在锂钛氧化物基负极活性物质纳米粒子上涂覆碳的方法以及通过该方法制备的碳涂覆锂钛氧化物基负极活性物质纳米粒子

摘要

Disclosed is a method for carbon coating on lithium titanium oxide-based anode active material nanoparticles. The method includes (a) introducing a lithium precursor solution, a titanium precursor solution and a surface modifier solution into a reactor, and reacting the solutions under supercritical fluid conditions to prepare a solution including nanoparticles of an anode active material represented by Li4Ti5O12, (b) separating the anode active material nanoparticles from the reaction solution, and (c) calcining the anode active material nanoparticles to uniformly coat the surface of the nanoparticles with carbon. Further disclosed are carbon-coated lithium titanium oxide-based anode active material nanoparticles produced by the method. In the anode active material nanoparticles, lithium ions are transferred rapidly. In addition, the uniform carbon coating ensures high electrical conductivity, allowing the anode active material nanoparticles to have excellent electrochemical properties.
机译:公开了一种在锂钛氧化物基负极活性材料纳米颗粒上进行碳涂覆的方法。该方法包括(a)将锂前体溶液,钛前体溶液和表面改性剂溶液引入反应器中,并使该溶液在超临界流体条件下反应以制备包含由Li 表示的负极活性物质的纳米颗粒的溶液。 4 Ti 5 O 12 ,(b)从反应溶液中分离出负极活性物质纳米粒子,以及(c)煅烧负极活性物质纳米粒子使其均匀用碳覆盖纳米颗粒的表面。还公开了通过该方法生产的碳包覆的锂钛氧化物基负极活性物质纳米粒子。在负极活性物质纳米颗粒中,锂离子迅速转移。另外,均匀的碳涂层确保高电导率,从而使负极活性物质纳米颗粒具有优异的电化学性能。

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