Silicon Nanofibrils on a Flexible Current Collector for Bendable Lithium-Ion Battery Anodes

被引:87
作者
Choi, Jae-Yong [1 ]
Lee, Dong Jin [2 ]
Lee, Yong Min [3 ]
Lee, Young-Gi [4 ]
Kim, Kwang Man [4 ]
Park, Jung-Ki [2 ]
Cho, Kuk Young [1 ]
机构
[1] Kongju Natl Univ, Div Adv Mat Engn, Cheonan 331717, Chungnam, South Korea
[2] Korea Adv Inst Sci & Technol, Dept Chem & Biomol Engn, Taejon 305701, South Korea
[3] Hanbat Natl Univ, Dept Appl Chem, Taejon 305719, South Korea
[4] Elect & Telecommun Res Inst ETRI, Power Control Device Res Team, Taejon 305700, South Korea
关键词
flexible current collector; lithium battery; silicon; anode; nanofibril; LONG CYCLE LIFE; HIGH-CAPACITY; RECHARGEABLE BATTERIES; ENERGY-STORAGE; NANOWIRES; ELECTRODES; FILM; PAPER; CRYSTALLINE;
D O I
10.1002/adfm.201202458
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
A high-energy-capacity, flexible lithium-ion battery is fabricated using a new nanofibril-structured silicon anode on a flexible current collector. Silicon is known to be the highest capacity anode material. However, its huge volume changes during the lithium insertion and extraction results in pulverization, which is the cause of the rapid capacity fade that occurs as the charge-discharge cycles progress. Nanostructured silicon can overcome this pulverization problem. A flexible current collector with high electric conductivity is prepared by a RF-magnetron sputtering of a thin copper layer (<1 m) onto a porous polymeric membrane. This provides not only flexibility of the electrode but also a template for simple fabrication of nanostructured silicon. Cells using the new, flexible current collector and corresponding silicon nanofibril-structured anode exhibit energy capacities over 2000 mAh g1 during 30 charge-discharge cycles at C/2. In addition, the coulombic efficiency remains over 99% after the third cycle. These results demonstrate the potential of the new anode for use in commercial high-capacity, flexible lithium-ion batteries.
引用
收藏
页码:2108 / 2114
页数:7
相关论文
共 45 条
[1]   Building better batteries [J].
Armand, M. ;
Tarascon, J. -M. .
NATURE, 2008, 451 (7179) :652-657
[2]   Structure and properties of reactive DC magnetron sputtered TiN/NbN hard superlattices [J].
Barshilia, HC ;
Rajam, KS .
SURFACE & COATINGS TECHNOLOGY, 2004, 183 (2-3) :174-183
[3]   ALL-SOLID LITHIUM ELECTRODES WITH MIXED-CONDUCTOR MATRIX [J].
BOUKAMP, BA ;
LESH, GC ;
HUGGINS, RA .
JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1981, 128 (04) :725-729
[4]   High-performance lithium battery anodes using silicon nanowires [J].
Chan, Candace K. ;
Peng, Hailin ;
Liu, Gao ;
McIlwrath, Kevin ;
Zhang, Xiao Feng ;
Huggins, Robert A. ;
Cui, Yi .
NATURE NANOTECHNOLOGY, 2008, 3 (01) :31-35
[5]   Bulk Synthesis of Crystalline and Crystalline Core/Amorphous Shell Silicon Nanowires and Their Application for Energy Storage [J].
Chen, Haitian ;
Xu, Jing ;
Chen, Po-chiang ;
Fang, Xin ;
Qiu, Jing ;
Fu, Yue ;
Zhou, Chongwu .
ACS NANO, 2011, 5 (10) :8383-8390
[6]   A Patterned 3D Silicon Anode Fabricated by Electrodeposition on a Virus-Structured Current Collector [J].
Chen, Xilin ;
Gerasopoulos, Konstantinos ;
Guo, Juchen ;
Brown, Adam ;
Wang, Chunsheng ;
Ghodssi, Reza ;
Culver, James N. .
ADVANCED FUNCTIONAL MATERIALS, 2011, 21 (02) :380-387
[7]   Porous Si anode materials for lithium rechargeable batteries [J].
Cho, Jaephil .
JOURNAL OF MATERIALS CHEMISTRY, 2010, 20 (20) :4009-4014
[8]   Effect of fluoroethylene carbonate additive on interfacial properties of silicon thin-film electrode [J].
Choi, Nam-Soon ;
Yew, Kyoung Han ;
Lee, Kyu Youl ;
Sung, Minseok ;
Kim, Ho ;
Kim, Sung-Soo .
JOURNAL OF POWER SOURCES, 2006, 161 (02) :1254-1259
[9]   Enhanced reversible lithium storage in a nanosize silicon/graphene composite [J].
Chou, Shu-Lei ;
Wang, Jia-Zhao ;
Choucair, Mohammad ;
Liu, Hua-Kun ;
Stride, John A. ;
Dou, Shi-Xue .
ELECTROCHEMISTRY COMMUNICATIONS, 2010, 12 (02) :303-306
[10]   Light-Weight Free-Standing Carbon Nanotube-Silicon Films for Anodes of Lithium Ion Batteries [J].
Cui, Li-Feng ;
Hu, Liangbing ;
Choi, Jang Wook ;
Cui, Yi .
ACS NANO, 2010, 4 (07) :3671-3678