方梓烜

个人信息Personal Information

副教授 硕士生导师

性别:男

毕业院校:电子科技大学

学历:博士研究生毕业

学位:工学博士学位

在职信息:在职人员

所在单位:材料与能源学院

入职时间:2022-08-30

学科:材料科学与工程

办公地点:电子科技大学清水河校区六号科研楼434A

扫描关注

论文成果

当前位置 中文主页 >> 科学研究 >> 论文成果

Energy band modulation of Li 2 O-rGO core - shell as cathode sacrificial additive enables capacity enhancement of hard carbon anode in Li-ion batteries

点击次数:

所属单位:[1]Univ Elect Sci & Technol China, Sch Mat & Energy, Chengdu 611731, Sichuan, Peoples R China;[2]Univ Elect Sci & Technol China, Yangtze Delta Reg Inst HuZhou, Huzhou 313001, Zhejiang, Peoples R China

发表刊物:JOURNAL OF COLLOID AND INTERFACE SCIENCE

关键字:Reduced graphene oxide; Lithium oxide; Hard carbon; Cathode pre-lithiation; Lithium-ion battery

摘要:Lithium oxides (Li 2 O) possess a considerable theoretical capacity, rendering them highly promising as cathodic pre-lithiation additives. However, its decomposition voltage exceeds the charging cut-off voltage of most cathode materials, hindering its direct use as a cathode sacrificial additive. Herein, we design a facile and safe method to reduce the decomposition energy of Li 2 O at room temperature to offset the irreversible capacity loss by using a core -shell structured Li 2 O-reduced graphene oxide (rGO)-polyethylene glycol (PEG) composite (denoted as Li 2 O- rGO-PEG). The graphene oxide (GO) was heat -treated to remove oxygen functional groups to synthesize rGO, and then reacted with Li 2 O to form a Li 2 O-rGO composite. According to the DFT calculations, the density of states at the Fermi level of Li 2 O-rGO becomes continuous and features a metallic nature, which significantly improves the electrical conductivity of Li 2 O and facilitates electron conduction that modify the delithiation potential of Li 2 O. PEG was used to enhance the cohesive force between rGO and Li 2 O and to protect Li 2 O from atmospheric contamination. Moreover, in order to demonstrate the excellent pre-lithiation ability of Li 2 O-rGO-PEG composite, hard carbon (HC) with low initial coulombic efficiency (ICE) was used as the anode. In the application of LFP (Li 2 O)/HC full cell, Li 2 O was decomposed to Li + to effectively improve the initial charge capacity from 149.7 to 200 mAh/g and discharge capacity from 104.2 to 147.5 mAh/g, which are 33.6 % and 41.6 % higher than those of the pristine LFP/HC full cell, respectively. The cathode pre-lithiation method proposed in this work is simple and environmentally friendly. The successful utilization of Li 2 O as a pre-lithiation additive effectively addressed the issue of low initial coulombic efficiency of the HC, indicating excellent prospects for practical applications.

文献类型:Article

卷号:667

页面范围:688-699

ISSN号:0021-9797

是否译文: