Literature DB >> 25233292

Selenium/interconnected porous hollow carbon bubbles composites as the cathodes of Li-Se batteries with high performance.

Jingjing Zhang1, Long Fan, Yongchun Zhu, Yanhua Xu, Jianwen Liang, Denghu Wei, Yitai Qian.   

Abstract

A kind of Se/C nanocomposite is fabricated by dispersing selenium in interconnected porous hollow carbon bubbles (PHCBs) via a melt-diffusion method. Such PHCBs are composed of porous hollow carbon spheres with a size of ∼70 nm and shells of ∼12 nm thickness interconnected to each other. Instrumental analysis shows that the porous shell of the PHCBs could effectively disperse and sequester most of the selenium, while the inner cavity remains hollow. When evaluated as cathode materials in a carbonate-based electrolyte for Li-Se batteries, the Se/PHCBs composites exhibit significantly excellent cycling performance and a high rate capability. Especially, the Se/PHCBs composite with an optimal content of ∼50 wt% selenium (Se50/PHCBs) displays a reversible discharge capacity of 606.3 mA h g(-1) after 120 cycles at 0.1 C charge-discharge rate. As the current density increased from 0.1 to 1 C (678 mA g(-1)), the reversible capacity of the Se50/PHCBs composite can still reach 64% of the theoretical capacity (431.9 mA h g(-1)). These outstanding electrochemical features should be attributed to effective sequestration of Se in the PHCBs, as well as to the ability to accommodate volume variation and enhance the electronic transport by making Se have close contact with the carbon framework.

Entities:  

Year:  2014        PMID: 25233292     DOI: 10.1039/c4nr03705g

Source DB:  PubMed          Journal:  Nanoscale        ISSN: 2040-3364            Impact factor:   7.790


  3 in total

1.  Hierarchical Porous Graphene Bubbles as Host Materials for Advanced Lithium Sulfur Battery Cathode.

Authors:  Wenjie Han; Qing Li; Hua Zhu; Dan Luo; Xianying Qin; Baohua Li
Journal:  Front Chem       Date:  2021-05-24       Impact factor: 5.221

2.  Covalent Selenium Embedded in Hierarchical Carbon Nanofibers for Ultra-High Areal Capacity Li-Se Batteries.

Authors:  Jian Zhou; Maoxin Chen; Tao Wang; Shengyang Li; Qiusheng Zhang; Meng Zhang; Hanjiao Xu; Jialing Liu; Junfei Liang; Jian Zhu; Xiangfeng Duan
Journal:  iScience       Date:  2020-02-17

3.  High-power lithium-selenium batteries enabled by atomic cobalt electrocatalyst in hollow carbon cathode.

Authors:  Hao Tian; Huajun Tian; Shijian Wang; Shuangming Chen; Fan Zhang; Li Song; Hao Liu; Jian Liu; Guoxiu Wang
Journal:  Nat Commun       Date:  2020-10-06       Impact factor: 17.694

  3 in total

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