全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
-  2017 

多壁碳纳米管纸作正极集流体的锂硫电池性能
Performance of lithium sulfur batteries using multiwalled carbon nanotube paper as cathode current collector

DOI: 10.13801/j.cnki.fhclxb.20160905.001

Keywords: 锂硫电池,碳纳米管,导电纸,集流体,库伦效率
lithium-sulfur battery
,carbon nanotube,conductive paper,current collector,Coulombic efficiency

Full-Text   Cite this paper   Add to My Lib

Abstract:

References

[1]  王雪丽, 魏俊华, 王庆杰, 等. 硫含量和集流体类型对锂硫电池性能的影响[J]. 电池, 2013, 43(3):151-154. WANG X L, WEI J H, WANG Q J, et al. Effect of sulfur content and type of collector on performance of Li/S battery[J]. Battery Bimonthly, 2013, 43(3):151-154(in Chinese).
[2]  BAUGHMAN R H, ZAKHIDOV A A, DE HEER W A. Carbon nanotubes:The route toward applications[J]. Science, 2002, 297(5582):787-792.
[3]  AJAYAN P M. Nanotubes from carbon[J]. Chemical Reviews, 1999, 99(7):1787-1800.
[4]  HUANG J Q, PENG H J, LIU X Y, et al. Flexible all-carbon interlinked nanoarchitectures as cathode scaffolds for high-rate lithium-sulfur batteries[J]. Journal of Materials Chemistry A, 2014, 2(28):10869-10875.
[5]  BALKE N, JESSE S, MOROZOVSKA A N, et al. Nanoscale mapping of ion diffusion in a lithium-ion battery cathode[J]. Nature Nanotechnology, 2010, 5(10):749-54.
[6]  WAAG W, K?BITZ S, SAUER D U. Experimental investigation of the lithium-ion battery impedance charac-teristic at various conditions and aging states and its influence on the application[J]. Applied Energy, 2013, 102(2):885-897.
[7]  LI X W, YANG R, CHENG B, et al. Enhanced electrochemical properties of nano-Li3PO4 coated on the LiMn2O4 cathode material for lithium ion battery at 55℃[J]. Materials Letters, 2012, 66, (1):168-171.
[8]  LI Z, ZHU K, WANG Y, et al. Pre-charge treatment of Li-riched Li[Li0.2Co0.4Mn0.4]O2 cathode material for lithium ion batteries[J]. Science of Advanced Materials, 2012, 4(8):843-846.
[9]  TARASCON J M, ARMAND M. Issues and challenges facing rechargeable lithium batteries[J]. Nature, 2001, 414(6861):359-67.
[10]  MARMORSTEIN D, YU T H, STRIEBEL K A. Electrochemical performance of lithium/sulfur cells with three different polymer electrolytes[J]. Journal of Power Sources, 2000, 89(2):219-226.
[11]  JUNGHOON K, DONG J L, HUN G J, et al. An advanced lithium-sulfur battery[J]. Advanced Functional Materials, 2013, 23(8):1076-1080.
[12]  CHOI J W, KIM J K, CHERUVALLY G, et al. Rechargeable lithium/sulfur battery with suitable mixed liquid electrolytes[J]. Electrochimica Acta, 2007, 52(5):2075-2082.
[13]  ZHANG S S. Role of LiNO3 in rechargeable lithium/sulfur battery[J]. Electrochimica Acta, 2012, 70(6):344-348.
[14]  CHEON S E, KO K S, CHO J H, et al. Rechargeable lithium sulfur battery II-Rate capability and cycle characteristics[J]. Journal of the Electrochemical Society, 2003, 150(6):A800-A805.
[15]  PELED E, GORENSHTEIN A, SEGAL M, et al. Rechargeable lithium sulfur battery (extended abstract)[J]. Journal of Power Sources, 1989, 26(26):269-271.
[16]  YAMIN H, GORENSHTEIN A, PENCINER J, et al. Lithium sulfur battery-Oxidation/reduction mechanisms of polysulfides in THF solutions[J]. Journal of the Electrochemical Society, 1988, 135(5):1045-1048.
[17]  SHIM J, STRIEBEL K A, CAIRNS E J. The lithium/sulfur rechargeable cell[J]. Journal of the Electrochemical Society, 2001, 149(10):A1321-A1325.
[18]  施再发, 杨少彬, 刘景东, 等. 化学沉淀法制备S-FeS/介孔碳复合材料及其电化学性能[J]. 复合材料学报, 2015, 32(2):341-346. SHI Z F, YANG S B, LIU J D, et al. Preparation of S-FeS/mesoporous carbon composites by chemical precipitation and its electrochemical properties[J]. Acta Materiae Compositae Sinica, 2015, 32(2):341-346(in Chinese).
[19]  ZHANG Y, ZHAO Y, KONAROV A, et al. A novel nano-sulfur/polypyrrole/graphene nanocomposite cathode with a dual-layered structure for lithium rechargeable batteries[J]. Journal of Power Sources, 2013, 241(6):517-521.
[20]  LEI L, RUAN G, PENG Z, et al. Enhanced cycling stability of lithium sulfur batteries using sulfur-polyaniline-graphene nanoribbon composite cathodes[J]. ACS Applied Materials & Interfaces, 2014, 6(17):15033-15039.
[21]  YADA C, ABE T, IRIYAMA Y, et al. A novel all-solid-state thin-film-type lithium-ion battery with in situ prepared positive and negative electrode materials[J]. Electro-chemistry Communications, 2009, 11(2):413-416.
[22]  WANG X, SUSANTYOKO R A, SUN L, et al. Ultrahigh volumetric capacity lithium ion battery anodes with CNT-Si film[J]. Nano Energy, 2014, 8(9):71-77.
[23]  WANG C, CHEN J J, SHI Y N, et al. Preparation and performance of a core-shell carbon/sulfur material for lithium/sulfur battery[J]. Electrochimica Acta, 2010, 55(23):7010-7015.
[24]  THOSTENSON E T, REN Z, CHOU T W. Advances in the science and technology of carbon nanotubes and their composites:A review[J]. Composites Science and Technology, 2001, 61(13):1899-1912.
[25]  CAO Z, ZHANG J, DING Y, et al. In situ synthesis of flexible elastic N-doped carbon foam as a carbon current collector and interlayer for high-performance lithium sulfur batteries[J]. Journal of Materials Chemistry A, 2016, 4(22):8636-8644.
[26]  WEI W, WANG J, ZHOU L, et al. CNT enhanced sulfur composite cathode material for high rate lithium battery[J]. Electrochemistry Communications, 2011, 13(5):399-402.
[27]  郑加飞, 郑明波, 李念武, 等. 石墨烯包覆碳纳米管-硫(CNT-S)复合材料及锂硫电池性能[J]. 无机化学学报, 2013, 29(7):1355-1360. ZHENG J F, ZHENG M B, LI N W, et al. Preparation of graphene coated carbon nanotube-sulfur composite and its performance for lithium-sulfur battery[J]. Journal of Inorganic Chemistry, 2013, 29(7):1355-1360(in Chinese).

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133