LITHIUM-ION-CONDUCTIVE OXIDE SINTERED BODY AND USE THEREOF
The present invention aims to provide a lithium-ion-conducting oxide sintered body capable of providing a solid electrolyte with an excellent ion conductivity, and a solid electrolyte, an electrode and an all-solid-state battery using the same. The lithium-ion-conducting oxide sintered body including at least lithium, tantalum, phosphorus, silicon, and oxygen as constituent elements, and having a polycrystalline structure consisting of crystal grains and grain interfaces formed between the crystal grains.
1 . A lithium-ion-conducting oxide sintered body, comprising:
at least lithium, tantalum, phosphorus, silicon, and oxygen as constituent elements, and
having a polycrystalline structure consisting of crystal grains and grain interfaces formed between the crystal grains.
2 . The lithium-ion-conducting oxide sintered body according to claim 1 , wherein the silicon element included in the grain interface is confirmed by a scanning transmission electron microscope (STEM)-energy dispersive X-ray spectroscopy (EDX) composition analysis.
3 . The lithium-ion-conducting oxide sintered body according to claim 1 , wherein a content ratio of the tantalum element in terms of the number of atoms in the element composition of the grain interface is lower than a content ratio of the tantalum element in terms of the number of atoms in the element composition of the crystal grain.
4 . The lithium-ion-conducting oxide sintered body according to claim 1 , wherein a thickness of the grain interface in a transmission electron microscope (TEM) cross-sectional observation is 10 nm or less.
5 . The lithium-ion-conducting oxide sintered body according to claim 1 , wherein a content ratio of the phosphorus element in terms of the number of atoms in the element composition of the grain interface is higher than a content ratio of the phosphorus element in terms of the number of atoms in the element composition of the crystal grain.
6 . The lithium-ion-conducting oxide sintered body according to claim 1 , wherein an average grain diameter of the crystal grains is 6.0 μm or less.
7 . The lithium-ion-conducting oxide sintered body according to claim 1 , wherein a relative density to a theoretical density is 50% or more.
8 . The lithium-ion-conducting oxide sintered body according to claim 1 , wherein, in the ion conductivity detected by an alternating current impedance measurement of the lithium-ion-conducting oxide sintered body, an ion conductivity at the grain interface is higher than an ion conductivity inside the crystal grain.
9 . A solid electrolyte consisting of the lithium-ion-conducting oxide sintered body according to claim 1 .
10 . An electrode comprising the lithium-ion-conducting oxide sintered body according to claim 1 .
11 . An all-solid-state battery comprising the lithium-ion-conducting oxide sintered body according to.