演讲嘉宾-孙海燕

孙海燕
意大利工业技术研究院
  孙海燕2005年毕业于山东大学应用物理学(本科学位), 2008年获得材料物理学硕士学位。2012年她获得慕尼黑大学自然科学博士学位。她的研究主要集中在有机-无机杂化太阳能电池以及研究纳米结构半导体对器件性能的影响。
  在她的博士研究之后,她在剑桥大学访问期间继续她的大型柔性混合太阳能电池的研究。之后, 2013年,她曾在中国科学院工作,研究电浆太阳能电池中的Au纳米粒子和碳纳米材料在锂离子电池中的的应用。
  目前她在意大利工业技术研究院作为博士后研究员(石墨烯旗舰奖学金)参与开发石墨烯的能源转换和存储的应用。目前,她的研究主要集中在石墨烯和基于二维的锂离子电池和柔性器件。
演讲题目:The role of flakes morphology on lithium ion storage capability of graphene anodes
主题会场石墨烯在锂离子电池领域的应用
开始时间
结束时间
内容摘要

Graphene-based lithium ion batteries (LIBs) have been considered as one of the most promising strategies[1] to fulfill the requirements of efficient energy-storage devices. In this context, strong efforts have been dedicated on improving the performance of graphene-based LIBs.[1-4] However, so far the focus was on both oxidized and functionalized flakes that normally suffer from large irreversible capacity and rapid capacity fade,[2] while, on the contrary, only a few works have exploited the full potential of pristine graphene flakes.[3-6] Moreover, it is still unclear the role of the graphene flakes morphology, such as lateral size and thickness, on the Li+ ion storage mechanisms.[2-4]
In this work, we investigate the lithiation/de-lithiation processes occurring in few- (FLG) and multi- (MLG) layer graphene-based electrodes, linking their electrochemical performance to the morphology of the flakes. The FLG and MLG flakes are prepared by liquid phase exfoliation of pristine graphite, sorted by lateral size (from 380 to 75 nm) and thickness (from 40 to 2 nm) exploiting a sedimentation-based separation in centrifugal field and, finally, deposited onto Cu disks for the realization of four different FLG- and MLG-based electrodes. The electrochemical lithium storage properties of these electrodes are assessed in half-cell configuration by means of galvanostatic cycling and differential capacity analysis. The results suggest that decreasing lateral size and thickness is effective for achieving large specific capacity, up to 1267 mAh g-1. However, an increasing amount of irreversible capacity is also associated to the reduction of flakes’ size. Moreover, the preferential Li ions storage by adsorption rather than intercalation in small lateral size (<100nm) FLG flakes has an unfavorable effect on the average de-lithiation voltage, resulting on lower voltage efficiency of these anodes with respect to the ones based on the large lateral size (~400nm) MLGs. We believe that the results reported in this work, provide important guidelines for the practical exploitation of graphene-based electrodes.

关于主办方

联系我们
400-110-3655   

E-mail: meeting@c-gia.cn   meeting01@c-gia.cn

参展电话:13646399362(苏老师)

主讲申请:19991951101(王老师)

官方微信订阅号
Copyright © 中国国际石墨烯创新大会 版权所有     运营机构:北京现代华清材料科技发展有限责任公司
grapchina.org 京ICP备10026874号-12   grapchina.cn 京ICP备10026874号-23
京公网安备 11010802023402号
分享到:
凯发_孙海燕

凯发

演讲嘉宾-孙海燕

孙海燕
意大利工业技术研究院
  孙海燕2005年毕业于山东大学应用物理学(本科学位), 2008年获得材料物理学硕士学位。2012年她获得慕尼黑大学自然科学博士学位。她的研究主要集中在有机-无机杂化太阳能电池以及研究纳米结构半导体对器件性能的影响。
  在她的博士研究之后,她在剑桥大学访问期间继续她的大型柔性混合太阳能电池的研究。之后, 2013年,她曾在中国科学院工作,研究电浆太阳能电池中的Au纳米粒子和碳纳米材料在锂离子电池中的的应用。
  目前她在意大利工业技术研究院作为博士后研究员(石墨烯旗舰奖学金)参与开发石墨烯的能源转换和存储的应用。目前,她的研究主要集中在石墨烯和基于二维的锂离子电池和柔性器件。
演讲题目:The role of flakes morphology on lithium ion storage capability of graphene anodes
主题会场石墨烯在锂离子电池领域的应用
开始时间
结束时间
内容摘要

Graphene-based lithium ion batteries (LIBs) have been considered as one of the most promising strategies[1] to fulfill the requirements of efficient energy-storage devices. In this context, strong efforts have been dedicated on improving the performance of graphene-based LIBs.[1-4] However, so far the focus was on both oxidized and functionalized flakes that normally suffer from large irreversible capacity and rapid capacity fade,[2] while, on the contrary, only a few works have exploited the full potential of pristine graphene flakes.[3-6] Moreover, it is still unclear the role of the graphene flakes morphology, such as lateral size and thickness, on the Li+ ion storage mechanisms.[2-4]
In this work, we investigate the lithiation/de-lithiation processes occurring in few- (FLG) and multi- (MLG) layer graphene-based electrodes, linking their electrochemical performance to the morphology of the flakes. The FLG and MLG flakes are prepared by liquid phase exfoliation of pristine graphite, sorted by lateral size (from 380 to 75 nm) and thickness (from 40 to 2 nm) exploiting a sedimentation-based separation in centrifugal field and, finally, deposited onto Cu disks for the realization of four different FLG- and MLG-based electrodes. The electrochemical lithium storage properties of these electrodes are assessed in half-cell configuration by means of galvanostatic cycling and differential capacity analysis. The results suggest that decreasing lateral size and thickness is effective for achieving large specific capacity, up to 1267 mAh g-1. However, an increasing amount of irreversible capacity is also associated to the reduction of flakes’ size. Moreover, the preferential Li ions storage by adsorption rather than intercalation in small lateral size (<100nm) FLG flakes has an unfavorable effect on the average de-lithiation voltage, resulting on lower voltage efficiency of these anodes with respect to the ones based on the large lateral size (~400nm) MLGs. We believe that the results reported in this work, provide important guidelines for the practical exploitation of graphene-based electrodes.

关于主办方

联系我们
400-110-3655   

E-mail: meeting@c-gia.cn   meeting01@c-gia.cn

参展电话:13646399362(苏老师)

主讲申请:19991951101(王老师)

官方微信订阅号
Copyright © 中国国际石墨烯创新大会 版权所有     运营机构:北京现代华清材料科技发展有限责任公司
grapchina.org 京ICP备10026874号-12   grapchina.cn 京ICP备10026874号-23
京公网安备 11010802023402号
分享到: