石墨烯
石墨氮化碳
杂原子
材料科学
热解
硫黄
碳纤维
化学工程
氮化物
阴极
氮化碳
锂(药物)
纳米技术
化学
催化作用
有机化学
复合材料
冶金
物理化学
内分泌学
工程类
复合数
医学
光催化
图层(电子)
戒指(化学)
作者
Jinghai Liu,Wanfei Li,Limei Duan,Xin Li,Lei Ji,Zhibin Geng,Keke Huang,Luhua Lu,Lisha Zhou,Zongrui Liu,Wei Chen,Liwei Liu,Shouhua Feng,Yuegang Zhang
出处
期刊:Nano Letters
[American Chemical Society]
日期:2015-07-06
卷期号:15 (8): 5137-5142
被引量:371
标识
DOI:10.1021/acs.nanolett.5b01919
摘要
Novel sulfur (S) anchoring materials and the corresponding mechanisms for suppressing capacity fading are urgently needed to advance the performance of Li/S batteries. Here, we designed and synthesized a graphene-like oxygenated carbon nitride (OCN) host material that contains tens of micrometer scaled two-dimensional (2D) rippled sheets, micromesopores, and oxygen heteroatoms. N content can reach as high as 20.49 wt %. A sustainable approach of one-step self-supporting solid-state pyrolysis (OSSP) was developed for the low-cost and large-scale production of OCN. The urea in solid sources not only provides self-supporting atmospheres but also produces graphitic carbon nitride (g-C3N4) working as 2D layered templates. The S/OCN cathode can deliver a high specific capacity of 1407.6 mA h g–1 at C/20 rate with 84% S utilization and retain improved reversible capacity during long-term cycles at high current density. The increasing micropores, graphitic N, ether, and carboxylic O at the large sized OCN sheet favor S utilization and trapping for polysulfides.
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