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A method of manufacturing a total solid-state battery, total solid-state battery, and total solid-state battery system

机译:制造总固态电池的方法,总固态电池和总固态电池系统

摘要

A main object of the present disclosure is to provide a method for manufacturing a whole-solid-state battery that can satisfy both the improvement in capacity-resistance and the suppression of the increase of an initial resistance. The above object is achieved by providing a method of manufacturing an all-solid-state battery, the method comprising: a manufacturing step of preparing a whole-solid-state battery including a cathode layer, a solid electrolyte layer and an anode layer in this order; and an initial charging step of the initial charge of the all-solid-state battery, characterized in that the anode layer includes a metal particle which can be Li-alloyed and has two or more kinds of crystal orientation in a particle as an anode active material, and in the initial charging step the total solid-state battery is at a battery voltage of 4.35 V or more and 4.55 V or less.
机译:本公开的主要目的是提供一种既可以满足容量电阻的提高又可以抑制初始电阻的增大的全固态电池的制造方法。通过提供一种制造全固态电池的方法来实现上述目的,该方法包括:制造步骤,该全固态电池的制造步骤包括在其中的阴极层,固体电解质层和阳极层。订购;以及全固态电池的初次充电的初次充电步骤,其特征在于,所述负极层包括可以进行Li合金化并且在粒子中具有两种或更多种晶体取向的金属粒子作为负极活性物质。材料,并且在初始充电步骤中,整个固态电池的电池电压为4.35 V以上且4.55 V以下。

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