帮助 关于我们

返回检索结果

生物模板法合成锂离子电池电极材料研究进展
Review on Synthesis of Electrode Materials Derived from Biological Templates for Lithium-ion Batteries

查看参考文献87篇

文摘 锂离子电池是一类极具潜力的新型二次化学储能器件,被广泛应用于便携式电子设备、电动交通工具和智能电网等领域。高性能电极材料的设计和合成是获得高能量密度、长循环寿命、高安全性锂离子电池的关键。文章针对锂离子电池电极材料存在制备工艺复杂、结构难以控制、活性物质利用率低、循环稳定性和倍率性能差等问题,从生物资源高效利用角度出发,结合生物材料尺寸均匀、形态多变、结构精密、环境友好等优点,综述了生物模板法合成锂离子电池电极材料的研究进展,并对该领域的发展方向进行了展望。
其他语种文摘 Lithium-ion batteries are considered as the high-potential secondary energy storage devices, which have been widely applied in many fields, such as portable electronic devices, electric vehicles and large-scale electricity storage in smart or intelligent grids. However, the design and synthesis of high-performance electrode materials are the crucial steps toward the realization of lithium-ion batteries with high energy density, long cycle life and high safety. This review discusses that the comprehensive utilization of biological materials with uniform size, various morphology, elaborate architecture, environmental benignity can overcome several fundamental issues of electrode materials, such as complex preparation, uncontrolled structure, low utilization of active materials, poor cycling stability and rate capability. Meanwhile,it also gives brief suggestions and outlooks on the future research directions in this field.
来源 材料导报 ,2016,30(1A):128-135 【核心库】
DOI 10.11896/j.issn.1005-023X.2016.01.022
关键词 锂离子电池 ; 正极材料 ; 负极材料 ; 电极材料 ; 生物模板
地址

浙江工业大学材料科学与工程学院, 杭州, 310014

语种 中文
文献类型 综述型
ISSN 1005-023X
学科 化学工业
基金 国家自然科学基金 ;  浙江省自然科学基金 ;  浙江省教育厅科研计划项目 ;  美国福特汽车公司项目
文献收藏号 CSCD:5631802

参考文献 共 87 共5页

1.  Wang Y X. Lithium and lithium ion batteries for applications in microelectronic devices: A review. J Power Sources,2015,286:330 CSCD被引 10    
2.  Liu W. Nickel-rich layered lithium transition-metal oxide for high-energy lithium-ion batteries. Angew Chem Int Ed,2015,54(15):4440 CSCD被引 134    
3.  Diouf B. Potential of lithium-ion batteries in renewable energy. Renew Energy,2015,76:375 CSCD被引 20    
4.  Wang Z Y. Metal oxide hollow nanostructures for lithium-ion batteries. Adv Mater,2012,24(14):1903 CSCD被引 38    
5.  Yuan J L. Review on mechanisms and continuum models of multi-phase transport phenomena in porous structures of non-aqueous Li-air batteries. J Power Sources,2015,278:352 CSCD被引 1    
6.  Dutta S A. Hierarchically porous carbon derived from polymers and biomass: Effect of interconnected pores on energy applications. Energy Environ Science,2014,7(11):3574 CSCD被引 1    
7.  Jayaprakash N. Porous hollow carbon @sulfur composites for high-power lithium-sulfur batteries. Angew Chem Inte Ed,2011,50(26):5904 CSCD被引 123    
8.  Evers S. New approaches for high energy density lithium-sulfur battery cathodes. Acc Chem Res,2013,46(5):1135 CSCD被引 92    
9.  Ji L W. Recent developments in nanostructured anode materials for rechargeable lithium-ion batteries. Energy Environ Sci,2011,4(8):2682 CSCD被引 58    
10.  Wu H. Designing nanostructured Si anodes for high energy lithium ion batteries. Nano Today,2012,7(5):414 CSCD被引 132    
11.  Tian J. Recent progress in design, synthesis, and applications of one-dimensional TiO_2 nanostructured surface heterostructures: A review. Chem Soc Rev,2014,43(20):6920 CSCD被引 34    
12.  Xu X D. Nanostructured transition metal sulfides for lithium ion batteries: Progress and challenges. Nano Today,2014,9(5):604 CSCD被引 12    
13.  Xin S. Nanocarbon networks for advanced rechargeable lithium batteries. Acc Chem Res,2012,45(10):1759 CSCD被引 54    
14.  Chiang C Y. Biological templates for antireflective current collectors for photoelectrochemical cell applications. Nano Lett,2012,12(11):6005 CSCD被引 3    
15.  Huang J. Bio-inspired fabrication of antireflection nanostructures by replicating fly eyes. Nanotechnology,2008,19(2):025602 CSCD被引 4    
16.  Zhao Y F. Biotemplated hierarchical nanostructure of layered double hydroxides with improved photocatalysis performance. ACS Nano,2009,3(12):4009 CSCD被引 11    
17.  Ryu J. Synthesis of diphenylalanine/cobalt oxide hybrid nanowires and their application to energy storage. ACS Nano,2010,4(1):159 CSCD被引 6    
18.  Lim A H. Biomineralized Sn-based multiphasic nanostructures for Li-ion battery electrodes. Nanoscale,2012,4(15):4694 CSCD被引 4    
19.  Wei C L. Synthesis of biocarbon coated Li_3V_2 (PO_4)_3 /C cathode material for lithium ion batteries using recycled tea. RSC Adv,2015,5(36):28662 CSCD被引 1    
20.  Zhou X Y. Cotton-templated fabrication of hierarchical SnO_2 mesoporous microtubes as the anode material of lithium ion battery. Mater Lett,2014,120:279 CSCD被引 2    
引证文献 4

1 王梅梅 硅/铜/碳纳米杂化材料制备及锂电性能研究 材料导报,2016,30(12B):16-20,47
CSCD被引 0 次

2 曹志颖 锂离子电池硅碳复合负极材料研究进展 电源技术,2018,42(5):722-724
CSCD被引 1

显示所有4篇文献

论文科学数据集
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号