首页> 外国专利> PREPARING METHOD OF MANGANESE OXIDE-CARBON NANOCOMPOSITE POWDER FOR SUPERCAPACITOR ELECTRODE MANUFACTURE

PREPARING METHOD OF MANGANESE OXIDE-CARBON NANOCOMPOSITE POWDER FOR SUPERCAPACITOR ELECTRODE MANUFACTURE

机译:超级电容器电极生产氧化锰碳纳米复合粉的制备方法

摘要

The present invention is a manganese oxide for the manufacture high capacity super capacitor electrode-oxidation while maintaining a constant temperature during the reaction then added to disperse the carbon material in the present invention relates to a carbon nanocomposite synthesis method, the manganese contained in the reaction vessel 7, a solution - reduction potential or sikidoe measure the pH change, by measuring after the time the start of the reaction identify therefrom timeout optionally the reaction at a certain reaction time, in advance in the same holding temperature, and reactant (Mn 7 the solution and the carbon material) usage using a self-potential difference between the reduction reaction - obtained by adjusting appropriately the reaction time to any end, oxide without providing of an oxidizing agent or reducing agent, or electrical energy based on the synthesis time (the time until the reaction of the reactants to be completely finished) to Mn for a high capacity super capacitor electrode made to be able to control the coating amount and the coating thickness of the manganese oxide that is coated on the carbon material via the direct can be coated, in particular the reaction time controls the manganese oxide to the number nm of thickness on the carbon material oxide-carbon relates to a nanocomposite synthesis. ; Capacitor, electrode, manganese oxide, carbon material, the active material, the synthesis time, the coating amount control
机译:本发明是一种用于制造高容量超级电容器电极的氧化锰,同时在反应过程中保持恒温,然后加入以分散碳材料。本发明涉及一种碳纳米复合材料的合成方法,该反应中所含的锰通过在反应开始之后进行测量,通过在反应容器中的溶液-还原电位或碱度计测量pH值变化,从而从中识别出超时(可选),在相同的保持温度下提前在一定的反应时间进行反应,并确定反应物(Mn 7 (溶液和碳材料)使用还原反应之间的自电势差-通过适当地调整反应时间到任何末端,氧化物而不提供氧化剂或还原剂或基于合成时间的电能来获得(在高容量下,直到反应物完全完成反应直至生成锰的时间可以涂覆电容器电极,该电容器电极能够控制涂覆量和经由直接涂覆在碳材料上的锰氧化物的涂覆厚度,特别是反应时间将锰氧化物控制在厚度上。碳材料氧化物-碳涉及纳米复合材料的合成。 ;电容器,电极,氧化锰,碳材料,活性材料,合成时间,涂覆量控制

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