青岛科技大学  English 
林健健
赞  

教授 博士生导师  
硕士生导师  

教师拼音名称:linjianjian

电子邮箱:

入职时间:2018-09-11

所在单位:化学与分子工程学院

学历:博士研究生

办公地点:四方校区第一实验楼216

性别:女

联系方式:19862229511

学位:工学博士

职称:教授

毕业院校:澳大利亚伍伦贡大学

手机版

访问量:

最后更新时间:..

Oxygen vacancies induced by vanadium doping regulate electronic structure of molybdenum dioxide for efficient lithium storage

关键字:TEMPLATE-FREE SYNTHESIS; ION; ELECTROLYTES; SPHERES; HYBRID; ANODES

摘要:As an efficient lithium-ion-storage material, molybdenum dioxide (MoO2) 2 ) is still troubled by poor intrinsic electron conductivity and large volume expansion, leading to suboptimal cycle life and rate performance. Heteroatoms doping strategy becomes a prevalent method to address the above problems. In this work, hierarchical porous vanadium-doped MoO2@polyvinyl 2 @polyvinyl pyrrolidone-derived carbon (V-PCM) composite was prepared through a metal oxyacid salts-confined pyrolysis strategy, in which V-doped MoO2 2 nanoparticles are successfully encapsulated inside the PVP-derived carbon structure. The doping of V atoms into MoO2 2 can regulate its electronic structure and induce the formation of oxygen vacancy, resulting in enhanced conductivity and improved reaction kinetics. In addition, the hierarchical porous carbon framework with sufficient spaces can not only inhibit the aggregation of V-MoO2 2 nanoparticles, but also alleviate the mechanical stress caused by the lithium insertion process. Accordingly, an optimized V-PCM electrode manifests superior lithium storage properties including a high initial specific capacity (1761.0 mAh g- 1 at 0.1 A g-- 1 ), a remarkable rate capability (516.7 mAh g- 1 at 2.0 A g-- 1 ), and excellent long-term cycle stability (530.0 mAh g- 1 at 1.0 A g- 1 after 1000 cycles). This work demonstrates a feasible metal atom doping method that enables the preparation of high-performance anode materials for lithium-ion batteries.

卷号:614

期号:-

是否译文:

崂山校区 - 山东省青岛市松岭路99号   
四方校区 - 山东省青岛市郑州路53号   
中德国际合作区(中德校区) - 山东省青岛市西海岸新区团结路3698号
高密校区 - 山东省高密市杏坛西街1号   
济南校区 - 山东省济南市文化东路80号©2015 青岛科技大学    
管理员邮箱:master@qust.edu.cn