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For: Padarti JK, Jupalli TT, Hirayama C, Senna M, Kawaguchi T, Sakamoto N, Wakiya N, Suzuki H. Low-temperature processing of Garnet-type ion conductive cubic Li7La3Zr2O12 powders for high performance all solid-type Li-ion batteries. J Taiwan Inst Chem Eng 2018. [DOI: 10.1016/j.jtice.2018.02.021] [Citation(s) in RCA: 10] [Impact Index Per Article: 1.7] [Reference Citation Analysis] [What about the content of this article? (0)] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 10/17/2022]
Number Cited by Other Article(s)
1
Atomic layer deposition of ZnO on Li1.3Al0.3Ti1.7(PO4)3 enables its application in all solid-state lithium batteries. J Taiwan Inst Chem Eng 2023. [DOI: 10.1016/j.jtice.2023.104681] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 02/16/2023]
2
Muruganantham R, Lin CY, Wu HW, Gregory DH, Liu WR. Interface design strategy in combined materials of lithium thiophosphate electrolyte for solid-state lithium-ion batteries applications. J Taiwan Inst Chem Eng 2022. [DOI: 10.1016/j.jtice.2022.104446] [Citation(s) in RCA: 0] [Impact Index Per Article: 0] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 10/17/2022]
3
Guo S, Sun Y, Cao A. Garnet-type Solid-state Electrolyte Li7La3Zr2O12: Crystal Structure, Element Doping and Interface Strategies for Solid-state Lithium Batteries. Chem Res Chin Univ 2020. [DOI: 10.1007/s40242-020-0116-0] [Citation(s) in RCA: 14] [Impact Index Per Article: 3.5] [Reference Citation Analysis] [Track Full Text] [Journal Information] [Subscribe] [Scholar Register] [Indexed: 11/30/2022]
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