Abstract:
A cathode active material for a magnesium secondary battery, the cathode active material including a composite transition metal oxide which is expressed by Chemical Formula 1 and intercalates and deintercalates magnesium: MgxMa1-yMbyO2+d Chemical Formula 1 wherein 0≦x≦1, 0.05≦y
Abstract translation:一种用于镁二次电池的阴极活性材料,所述正极活性材料包括由化学式1表示的复合过渡金属氧化物,并插入和脱嵌镁:Mg x Mg 1-y M 2 O 2 + d化学式1其中0&nlE; x&nlE; 1,0.05&nlE ; y <0.5和-0.3&nlE; d <1,Ma和Mb各自独立地为选自周期表第5至12组的金属。
Abstract:
A composite cathode active material, a method of preparing the composite cathode active material, a cathode including the composite cathode active material, and a lithium battery including the cathode. The composite cathode active material includes a lithium intercalatable material; and a garnet oxide, wherein an amount of the garnet oxide is about 1.9 wt % or less, based on a total weight of the composite cathode active material.
Abstract:
A flexible solid electrolyte includes a first inorganic protective layer, an inorganic-organic composite electrolyte layer including an inorganic component and an organic component, and a second inorganic protective layer, where the inorganic-organic composite electrolyte layer is disposed between the first inorganic protective layer and the second inorganic protective layer, and the inorganic component and the organic component collectively form a continuous ion conducting path.
Abstract:
A solid ion conductor including a garnet oxide represented by Formula 1: L5+x+2y(Dy,E3-y)(Mez,M2-z)Od Formula 1 wherein L is at least one of a monovalent cation or a divalent cation, D is a monovalent cation, E is a trivalent cation, Me and M are each independently a trivalent, tetravalent, pentavalent, or a hexavalent cation, 0
Abstract translation:包括由式1表示的石榴石氧化物的固体离子导体:L5 + x + 2y(Dy,E3-y)(Mez,M2-z)Od式1其中L是一价阳离子或二价阳离子中的至少一种, D是一价阳离子,E是三价阳离子,Me和M各自独立地是三价,四价,五价或六价阳离子,0
Abstract:
A composite cathode active material, a method of preparing the composite cathode active material, a cathode including the composite cathode active material, and a lithium battery including the cathode. The composite cathode active material includes a lithium intercalatable material; and a garnet oxide, wherein an amount of the garnet oxide is about 1.9 wt % or less, based on a total weight of the composite cathode active material.
Abstract:
A lithium ion conductor represented by Formula 1: Li1+x+2yAlxMgyM2−x−y(PO4)3 Formula 1 wherein, in Formula 1, M includes at least one of titanium (Ti), germanium (Ge), zirconium (Zr), hafnium (Hf), and tin (Sn), 0
Abstract translation:由式1表示的锂离子导体:Li1 + x + 2yAlxMgyM2-xy(PO4)3式1其中,在式1中,M包括钛(Ti),锗(Ge),锆(Zr),铪 (Hf)和锡(Sn),0
Abstract:
A solid ion conductor including a garnet oxide represented by Formula 1: L5+xE3(Mez,M2-z)Od Formula 1 wherein L includes Li and is at least one of a monovalent cation and a divalent cation; E is a trivalent cation; Me and M are each independently one of a trivalent, tetravalent, pentavalent, and hexavalent cation; 0
Abstract:
A composite cathode active material, a method of preparing the composite cathode active material, a cathode including the composite cathode active material, and a lithium battery including the cathode. The composite cathode active material includes a lithium intercalatable material; and a garnet oxide, wherein an amount of the garnet oxide is about 1.9 wt % or less, based on a total weight of the composite cathode active material.
Abstract:
A composite cathode active material, a method of preparing the composite cathode active material, a cathode including the composite cathode active material, and a lithium battery including the cathode. The composite cathode active material includes a lithium intercalatable material; and a garnet oxide, wherein an amount of the garnet oxide is about 1.9 wt % or less, based on a total weight of the composite cathode active material.
Abstract:
A flexible solid electrolyte includes a first inorganic protective layer, an inorganic-organic composite electrolyte layer including an inorganic component and an organic component, and a second inorganic protective layer, where the inorganic-organic composite electrolyte layer is disposed between the first inorganic protective layer and the second inorganic protective layer, and the inorganic component and the organic component collectively form a continuous ion conducting path.