首页> 外国专利> ACTIVE MATERIAL BASED ON BUNDLES OF ONE-DIMENSIONAL TRANSITION METAL DICHALCOGENIDE NANOTUBES FOR USE IN LITHIUM BATTERIES AND ACCUMULATORS

ACTIVE MATERIAL BASED ON BUNDLES OF ONE-DIMENSIONAL TRANSITION METAL DICHALCOGENIDE NANOTUBES FOR USE IN LITHIUM BATTERIES AND ACCUMULATORS

机译:基于一维过渡金属二氢氰化物纳米管束的活性材料,用于锂电池和蓄电池

摘要

The invention relates to the production and utilization of an electrode material in lithium-ion batteries and accumulators that is based on one-dimensional transition metal dichalcogenide nanotubes and an electronic conductor. The material based on bundles of one-dimensional transition metal dichalcogenide nanotubes and an electronic conductor affords incorporation of lithium into lithium-ion batteries and incorporation of lithium into lithium-ion accumulators. The amount of lithium incorporated into the material based on bundles of one-dimensional transition metal dichalcogenide nanotubes and an electronic conductor depends upon the percentage of the active material and upon the construction thereof and may amount up to 3.2 moles (2.3 moles on average) of lithium per mole of transition metal chalcogenides. The average voltage of the release of lithium from the active material based on bundles of one-dimensional MoS2 nanotubes and an electronic conductor is 1.1 V as measured against a Li/Li+ half-cell.
机译:本发明涉及基于一维过渡金属二硫化碳纳米管和电子导体的锂离子电池和蓄电池中电极材料的生产和利用。基于一维过渡金属二硫化碳纳米管和电子导体束的材料,可以将锂结合到锂离子电池中,并且可以将锂结合到锂离子蓄电池中。基于一维过渡金属二卤化碳纳米管和电子导体束而掺入材料中的锂的量取决于活性材料的百分比及其构造,并且锂的量最多为3.2摩尔(平均2.3摩尔)。每摩尔过渡金属硫属元素化物含锂。相对于Li / Li +半电池,基于一维MoS2纳米管和电子导体的束从活性材料释放的锂的平均电压为1.1V。

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