Lithium-Ion Battery Development with High Energy Density
DOI:
https://doi.org/10.54097/hset.v27i.3849Keywords:
lithium-ion battery; electrode material; electrolyte; energy storage.Abstract
With the increasing development of technology, the battery's energy density has improved significantly, which led to improvements in numerous fields, such as the manufacture of electrical vehicles and phones. However, we found out that the battery's energy density is still not as high as expected. For example, electric aircraft are still not ready for mass production as the cost of the production is magnificent. This report will start with the introduction of batteries and how batteries are related to electrical cars to find out the energy density problems of batteries and how to solve those problems. Next, there will be an introduction to electrodes and electrolytes. We will focus on the different properties provided by different materials used to make them up and how to select them.
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http://www.juda.cn/news/150897.html
Goodenough, J.B. How we made the Li-ion rechargeable battery. Nat Electron 1, 204 (2018).
Zhang Linchao, Chen Chunhua. Electrode Materials for Lithium Ion Battery[J]. Progress in Chemistry, 2011, 23(0203): 275-283.
Chang H, Wu YR, Han X, Yi TF. Recent developments in advanced anode materials for lithium-ion batteries. Energy Mater 2021;1:100003.
Zhang H, Eshetu GG, Judez X, Li C, Rodriguez-Martínez LM, Armand M. Electrolyte additives for lithium metal anodes and rechargeable lithium metal batteries: progress and perspectives. Angew Chem Int Ed Engl 2018;57:15002-27
Goodenough JB, Park KS. The Li-ion rechargeable battery: a perspective. J Am Chem Soc 2013;135:1167-76.
Cheng Q, Zhang Y. Multi-channel graphite for high-rate lithium ion battery. J Electrochem Soc 2018;165:A1104-9.
Kim S, Seo D, Ma X, Ceder G, Kang K. Electrode materials for rechargeable sodium-ion batteries: potential alternatives to current lithium-ion batteries. Adv Energy Mater 2012;2:710-21.
Cabana J, Monconduit L, Larcher D, Palacín MR. Beyond intercalation-based Li-ion batteries: the state of the art and challenges of electrode materials reacting through conversion reactions. Adv Mater 2010;22:E170-92.
Lu Y, Yu L, Lou XW. Nanostructured conversion-type anode materials for advanced lithium-ion batteries. Chem 2018;4:972-96.
Kummer M, Badillo JP, Schmitz A, et al. Silicon/polyaniline nanocomposites as anode material for lithium ion batteries. J Electrochem Soc 2013;161:A40-5.
Liu XH, Zhong L, Huang S, Mao SX, Zhu T, Huang JY. Size-dependent fracture of silicon nanoparticles during lithiation. ACS Nano 2012;6:1522-31.
Cheng H, Shapter JG, Li Y, Gao G. Recent progress of advanced anode materials of lithium-ion batteries. J Energy Chem 2021;57:451-68.
Haoyu Fang 2021 IOP Conf. Ser.: Earth Environ. Sci. 781 042023.
LIU Zhen-hong, SUN Xiao-gang, CHEN Long, QIU Zhi-wen, CAI Man-yuan. Performance of Lithium Ion Batteries with Carbon Nanotube Paper/Nano Silicon Composite Electrode. Journal of Materials Engineering, 2018, 46(1): 99-105
duanyu, 2018, What are the ingredients of lithium battery electrolyte? , https://zhuanlan.zhihu.com/p/33118585
fangchength, 2011, Electrolytes for lithium electronic batteries https://www.docin.com/p-264990133.html?docfrom=rrela
Ding Xuanhuan, 2017, A discussion of the chemical properties of carbonate and its application in lithium battery electrolytes.https://blog.sciencenet.cn/home.php?mod=space&uid=1213210&do=blog&id=1081130
zhangjunbo555, 2018, Summary of knowledge on various lithium salts, https://nyxr-home.com/20928.html
Manthiram A., Yu X., Wang S., "Lithium Battery Chemistrie Enabled by Solid-State Electrolytes," Nature Reviews Materials, 2017, 2 (3)
Lin Z., Liang C., "Lithium-Sulfur Batteries: From Liquid to Solid Cells, J. Mater. Chem. A, 2014, 3 (3): 936-958
Sun Y., Hu X., Yu J. C. et al., "Morphsynthesis of a Hierarchical MoO2 Nanoarchitecture As A binder-Free Anode For Lithium-Ion Batteries," Energy and Environmental Science, 2011, 4 (8) : 2870-2877
Shi K., Decheng A. N., Yanbing H. E., et al. "Research Progress and Future Trends of Solid State Lithium-Sulfur Batteries Based on Polymer Electrolyte," Energy Storage Science and Technology, 2017
Thamhadurai V., Weppner W., "Recent progress in Solid Oxide and Lithium Ion Conducting Electrolytes Research," Ionics, 2006, 12(1): 81-92
Kumar P. P., Yashonath S., "Ionic Conduction in the Solid State," Journal of ChemicalSciences, 2006, 118 ( 1 ):135-154
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