您的位置: 专家智库 > >

国家自然科学基金(U1232111)

作品数:2 被引量:6H指数:1
发文基金:国家自然科学基金国家重点基础研究发展计划更多>>
相关领域:电气工程更多>>

文献类型

  • 2篇期刊文章
  • 1篇会议论文

领域

  • 2篇电气工程

主题

  • 1篇电池
  • 1篇电解质
  • 1篇稳定性
  • 1篇空气电池
  • 1篇固态
  • 1篇固态电解
  • 1篇固态电解质
  • 1篇高稳定
  • 1篇高稳定性
  • 1篇OXYGEN
  • 1篇XO
  • 1篇
  • 1篇BATTER...
  • 1篇GARNET
  • 1篇LARGE
  • 1篇X
  • 1篇CARBON...
  • 1篇LITHIU...
  • 1篇HIGH-S...
  • 1篇ELECTR...

机构

  • 1篇中国科学院

作者

  • 1篇李驰麟
  • 1篇郭向欣
  • 1篇赵宁
  • 1篇李忆秋
  • 1篇范武刚
  • 1篇崔忠慧
  • 1篇黄诗婷

传媒

  • 2篇Chines...
  • 1篇第17届全国...

年份

  • 1篇2015
  • 1篇2014
  • 1篇2013
2 条 记 录,以下是 1-3
排序方式:
二次锂空气电池基础问题及高稳定性Li7La3Zr2O12固态电解质研究
随着低碳社会对高效清洁能源需求的日益迫切,高比能二次电池体系的开发受到了前所未有的关注。二次锂空气电池和全固态锂电池是高比能二次电池体系中的重要体系。二次锂空气电池有望实现数倍乃至十倍于商用锂离子电池的能量密度。近来,采...
郭向欣李驰麟黄诗婷赵宁崔忠慧范武刚李忆秋
Densification and lithium ion conductivity of garnet-type Li_(7-x)La_3Zr_(2-x)Ta_xO_(12) (x=0.25) solid electrolytes被引量:6
2013年
The garnet-type Li7La3Zr2O12 ceramic is a promising solid electrolyte for all-solid-state secondary lithium batteries. However, it faces the problem of lithium volatilization during sintering, which may cause low density and deterioration of ionic conductivity. In this work, the effects of sintering temperature and addition on the density as well as the lithium ion conductivity of Li7-xLa3Zr2-xTaxO12 (LLZTO, x=0.25) ceramics prepared by solid state reaction have been studied. It is found that optimization of the sintering temperature leads to a minor increase in the ceramic density, yielding an optimum ionic conductivity of 2.9×10-4 S·cm-1 at 25℃. Introduction of Li 3 PO 4 addition in an appropriate concentration can obviously increase the density, leading to an optimum ionic conductivity of 7.2×10-4 S·cm-1 at 25℃. This value is superior to the conductivity data in most recent reports on the LLZTO ceramics.
曹阳李忆秋郭向欣
A superhigh discharge capacity induced by a synergetic effect between high-surface-area carbons and a carbon paper current collector in a lithium–oxygen battery
2015年
This paper invesitages the synergetic effect between high-surface-area carbons, such as Ketjan Black(KB) or Super P(SP) carbon materials, and low-surface-area carbon paper(CP) current collectors and it also examines their influence on the discharge performance of nonaqueous Li–O2cells. Ultra-large specific discharge capacities are found in the KB/CP cathodes, which are much greater than those observed in the individual KB or CP cathodes. Detailed analysis indicates that such unexpectedly large capacities result from the synergetic effect between the two components. During the initial discharges of KB or SP materials, a large number of superoxide radical(O·-2) species in the electrolytes and Li2O2 nuclei at the CP surfaces are formed, which activate the CP current collectors to contribute considerable capacities. These results imply that CP could be a superior material for current collectors in terms of its contribution to the overall discharge capacity.On the other hand, we should be careful to calculate the specific capacities of the oxygen cathodes when using CP as a current collector; i.e., ignoring the contribution from the CP may cause overstated discharge capacities.
罗广生黄诗婷赵宁崔忠慧郭向欣
共1页<1>
聚类工具0