硫黄
阴极
石墨烯
材料科学
氧化物
化学工程
氮气
下降(电信)
兴奋剂
纳米复合材料
无机化学
纳米技术
化学
光电子学
冶金
有机化学
电气工程
物理化学
工程类
作者
Tilahun Awoke Zegeye,Meng‐Che Tsai,Ju‐Hsiang Cheng,Ming‐Hsien Lin,Hung-Ming Chen,John Rick,Wei‐Nien Su,Chung‐Feng Jeffrey Kuo,Bing‐Joe Hwang
标识
DOI:10.1016/j.jpowsour.2017.03.063
摘要
High capacity lithium-sulfur batteries with stable cycle performance and sulfur loadings greater than 70 wt% are regarded as promising candidates for energy storage devices. However, it has been challenged to achieving practical application of sulfur cathode because of low loading of active sulfur and poor cycle performance. Herein, we design novel nanocomposite cathode materials consist of sulfur (80 wt%) embedded within nitrogen doped three-dimensional reduced graphene oxide (N-3D-rGO) by controllable sulfur-impregnation method. Nitrogen doping helps increase the surface area by ten times from pristine graphene, and pore volume by seven times. These structural features allow the cathode to hold more sulfur. It also adsorbs polysulfides and prevents their detachment from the host materials; thereby achieving stable cycle performance. The solution drop sulfur-impregnation method provides uniform distribution of nano-sulfur in controlled manner. The material delivers a high initial discharge capacity of 1042 mAhg−1 and 916 mAhg−1 with excellent capacity retention of 94.8% and 81.9% at 0.2 C and 0.5 C respectively after 100 cycles. Thus, the combination of solution drop and nitrogen doping opens a new chapter for resolving capacity fading as well as long cycling problems and creates a new strategy to increase sulfur loading in controlled mechanism.
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