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nano carbon materials having multiple hydrogen bonding motifs for electrode in supercapacitors

机译:超级电容器中具有多个氢键基序的纳米碳材料,用于电极

摘要

The present invention higher order structure by multiple hydrogen bonds to be used as the electrode supercapacitors relates to a carbon nanomaterial having the electrode, the electrode in supercapacitors, the electrode, are formed of carbon nano material, the nano-carbon material is carbon nanotubes by introducing a functional group capable of hydrogen bonding to the surface or multi-terminal forming an electrode material consisting of multiple hydrogen bonds between the material, and by the multiple hydrogen bonds that are used for high-capacity capacitor electrode having a second electrode using the same as a higher-order structure of the carbon nano-electrode material in a technical base. Accordingly, electrical conductivity is excellent, but using carbon nanomaterials to the electrode, the carbon introducing a functional group that can make a three or more multi-hydrogen bond on a conductive carbon nano material, such as without the use of dispersant and having a higher order structure by multiple hydrogen-bonding to form the nano-paste material, the other conductive and non-power storage capacity of the electrodes by utilizing it as an electrode in supercapacitors there is an advantage that good to improve the performance of supercapacitors. ;
机译:本发明通过多个氢键作为电极超级电容器使用的高阶结构涉及一种具有电极的碳纳米材料,该超级电容器中的电极,电极均由碳纳米材料形成,所述纳米碳材料为碳纳米管。引入能够与表面形成氢键的官能团或形成具有由材料之间的多个氢键组成的电极材料的多端,并通过用于具有第二电极的高容量电容器电极的多个氢键来使用该官能团作为碳纳米电极材料的高阶结构在技术基础上。因此,导电性优异,但是使用碳纳米材料到电极上,碳引入了可以在导电碳纳米材料上形成三个或更多个多氢键的官能团,例如不使用分散剂并且具有更高的通过多次氢键合形成纳米糊状材料的有序结构,通过将其用作超级电容器中的电极,电极的其他导电和非蓄电能力具有良好地改善超级电容器性能的优点。 ;

著录项

  • 公开/公告号KR101484163B1

    专利类型

  • 公开/公告日2015-01-21

    原文格式PDF

  • 申请/专利权人

    申请/专利号KR20130008735

  • 申请日2013-01-25

  • 分类号H01G11/36;C01B31/02;B82B1/00;

  • 国家 KR

  • 入库时间 2022-08-21 14:58:46

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