首页> 外文期刊>Journal of power sources >Triple hybrid materials: A novel concept within the field of organic-inorganic hybrids
【24h】

Triple hybrid materials: A novel concept within the field of organic-inorganic hybrids

机译:三重混合材料:有机-无机混合材料领域的新概念

获取原文
获取原文并翻译 | 示例
           

摘要

We explored a new approach within the field of hybrid materials, namely, an integration of an electroactive inorganic molecule into a conducting polymer that in turn is intercalated into an extended inorganic oxide. In particular we present the specific material formed by hexacyanoferrate-doped polypyrrole or polyaniline inserted in turn into layered V_2O_5. This novel kind of hybrid with three components interacting at a molecular level is what we have called, triple hybrid materials (THM). The synthetic approach was based on our earlier work on PAni/V_2O_5, PAni/HCF and PPy/HCF systems. The materials obtained were characterized by FTIR, XRD, TGA, elemental analyses, and ICP. The electrochemical properties of THMs as insertion cathodes in rechargeable Li cells were also explored. The initial specific charge was high for PPy/HCF/V_2O_5 system (160 Ah kg~(-1)), giving a greater value than for their corresponding simple hybrids: PPy/HCF (69 Ah kg~(-1)) and PPy/V_2O_5 (120 Ah kg~(-1)). Repeated charge-discharge cycles showed a poor cyclability, which could be related to the voltage limit values during recharge, overoxidation of the polymer, or to the detrimental effect of structural water from THMs. Nevertheless, the present work showed a novel route towards a more complex and versatile electroactive hybrid design.
机译:我们探索了混合材料领域中的一种新方法,即将电活性无机分子集成到导电聚合物中,然后将其插入扩展的无机氧化物中。特别地,我们提出了由六氰基高铁酸盐掺杂的聚吡咯或聚苯胺依次插入层状V_2O_5中形成的特定材料。这种具有三种在分子水平上相互作用的组分的新型杂化材料称为三重杂化材料(THM)。综合方法基于我们之前在PAni / V_2O_5,PAni / HCF和PPy / HCF系统上的工作。通过FTIR,XRD,TGA,元素分析和ICP对得到的材料进行表征。还探讨了THMs作为可充电锂电池中插入阴极的电化学特性。 PPy / HCF / V_2O_5系统的初始比电荷很高(160 Ah kg〜(-1)),其值比相应的简单杂种PPy / HCF(69 Ah kg〜(-1))和PPy高。 / V_2O_5(120 Ah kg〜(-1))。重复的充电-放电循环显示出较差的循环性,这可能与充电过程中的电压极限值,聚合物的过氧化或THM中结构水的有害作用有关。尽管如此,目前的工作显示了一条走向更复杂和多功能的电活性混合动力设计的新颖途径。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号