Solid Electrolyte, Lithium Battery, Battery Pack, And Vehicle
A solid electrolyte and lithium battery technology, which is applied in the direction of solid electrolyte, electrolyte battery manufacturing, non-aqueous electrolyte battery, etc., can solve the problems of low conductivity, difficulty in stable and low-cost production, and large practical application, so as to achieve low cost, Excellent discharge rate performance and high lithium ion conductivity
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no. 1 Embodiment approach
[0024] The oxide contained in the solid electrolyte described in the embodiment is composed of the general formula Li 1+2x M1 2-x (Ca 1-y M2 y ) x (PO 4 ) 3 In the formula, M1 is at least one selected from Zr and Hf, and M2 is at least one selected from Sr and Ba. In addition, in the formula, x is in the range of 04 ) as a skeleton structure. The crystal structure belongs to rhombohedral structure, and the representative space group is R-3c. Furthermore, in the crystal structure, PO 4 Tetrahedra and MO 6 The octahedrons all share vertices with each other and form [M 2 (PO 4 ) 3 ] n- The chemical formula represents the skeleton structure. exist figure 1 In the skeleton structure of the rhombohedral crystal system shown in , four octahedra exist around one tetrahedron, and six tetrahedra exist around one octahedron. General NASICON type compounds are known to take only at high temperature figure 1 In the rhombohedral crystal structure shown in , strain occurs in ...
no. 2 Embodiment approach
[0037] The lithium battery according to the embodiment includes a positive electrode layer capable of intercalating and deintercalating lithium ions, a negative electrode layer capable of intercalating and deintercalating lithium ions, and a Li conductive layer capable of conducting lithium ions. At least one of these positive electrode layer, negative electrode layer, and Li conductive layer contains the solid electrolyte described in the first embodiment.
[0038] The positive electrode layer includes a positive electrode active material, and can be arranged on a current collector to constitute a positive electrode. The positive electrode active material will be described later. The negative electrode layer includes a negative electrode active material, and can be arranged on a current collector to constitute a negative electrode. Alternatively, the positive electrode layer is arranged on one surface of the current collector, and the negative electrode layer is arranged on ...
no. 3 Embodiment approach
[0112] According to a third embodiment, a battery pack is provided. This battery pack includes the lithium battery described in the second embodiment.
[0113] The battery pack according to the third embodiment may include one or more lithium batteries (single cells) described above in the second embodiment. The plurality of lithium batteries that can be included in the battery pack according to the third embodiment can be electrically connected in series, in parallel, or a combination of series and parallel. A plurality of batteries may be electrically connected to form a battery pack. The battery pack according to the third embodiment may include a plurality of assembled batteries.
[0114] In addition, the lithium battery (single battery) included in the battery pack may include figure 2 A lithium battery with a single-layer electrode body as shown in electrode body 10A, or it may also be a lithium battery comprising image 3 A lithium battery with a bipolar electrode ...
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