NONAQUEOUS SECONDARY BATTERY

PURPOSE: To provide a nonaqueous secondary battery with high discharge voltage and long cycle life by using a specific compound as a positive electrode active material in the nonaqueous secondary battery comprising the positive electrode active material, a negative electrode active material, and a n...

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description PURPOSE: To provide a nonaqueous secondary battery with high discharge voltage and long cycle life by using a specific compound as a positive electrode active material in the nonaqueous secondary battery comprising the positive electrode active material, a negative electrode active material, and a nonaqueous electrolyte. CONSTITUTION: In a nonaqueous secondary battery comprising a positive electrode active material, a negative electrode active material (example: Li-Al alloy), a nonaqueous electrolyte preferably containing LiPF6 as a supporting salt in a solvent (example: a mixture of ethylene carbonate and diethyl carbonate), as the positive electrode active material, Lix Moy with opposite spinel structure (M is at least one transition metal, x is 0-1.2, y is 3.8-4.2) is used. Preferably, Lix NiVO4 , and/or Lix CoVO4 (x is 0.1-1.2) is/are contained in the positive electrode active material. Preferably, particle size of the positive electrode active material is 0.5-50μm.
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CONSTITUTION: In a nonaqueous secondary battery comprising a positive electrode active material, a negative electrode active material (example: Li-Al alloy), a nonaqueous electrolyte preferably containing LiPF6 as a supporting salt in a solvent (example: a mixture of ethylene carbonate and diethyl carbonate), as the positive electrode active material, Lix Moy with opposite spinel structure (M is at least one transition metal, x is 0-1.2, y is 3.8-4.2) is used. Preferably, Lix NiVO4 , and/or Lix CoVO4 (x is 0.1-1.2) is/are contained in the positive electrode active material. 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CONSTITUTION: In a nonaqueous secondary battery comprising a positive electrode active material, a negative electrode active material (example: Li-Al alloy), a nonaqueous electrolyte preferably containing LiPF6 as a supporting salt in a solvent (example: a mixture of ethylene carbonate and diethyl carbonate), as the positive electrode active material, Lix Moy with opposite spinel structure (M is at least one transition metal, x is 0-1.2, y is 3.8-4.2) is used. Preferably, Lix NiVO4 , and/or Lix CoVO4 (x is 0.1-1.2) is/are contained in the positive electrode active material. 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CONSTITUTION: In a nonaqueous secondary battery comprising a positive electrode active material, a negative electrode active material (example: Li-Al alloy), a nonaqueous electrolyte preferably containing LiPF6 as a supporting salt in a solvent (example: a mixture of ethylene carbonate and diethyl carbonate), as the positive electrode active material, Lix Moy with opposite spinel structure (M is at least one transition metal, x is 0-1.2, y is 3.8-4.2) is used. Preferably, Lix NiVO4 , and/or Lix CoVO4 (x is 0.1-1.2) is/are contained in the positive electrode active material. Preferably, particle size of the positive electrode active material is 0.5-50μm.</abstract><edition>6</edition><oa>free_for_read</oa></addata></record>
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subjects BASIC ELECTRIC ELEMENTS
ELECTRICITY
PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSIONOF CHEMICAL INTO ELECTRICAL ENERGY
title NONAQUEOUS SECONDARY BATTERY
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