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Online since: November 2014
Authors: Yu Zhong Guo, Fei Luo, Lin Zhang, Xing Shuai Zhang
Effect of Solid Reaction Temperature on the Cation Mixing and Electrochemical Properties of LiNi0.4Co0.2Mn0.4O2 Cathode Materials in High Energy Li-Ion Batteries Lin Zhang a, Fei Luo, Xing-shuai Zhang, Yu-zhong Guo b School of Materials Science and Engineering, Kunming University of Science and Technology, Kunming 650093,Yunnan Province, China a 1990zlin@sina.com, b yzguocn62@sina.com (corresponding author) Keywords: LiNixCo1-2xMnxO2; calcination temperature, cation mixing, cycleability Abstract.
A LiNi0.4Co0.2Mn0.4O2 material was prepared via the co-precipitation in solution and ensuing solid reaction of the prepared precursors with LiOH.H2O, investigating the influence of solid reaction temperature on the cation mixing and electrochemical performance of the materials as a cathode.
Among several promising alternative candidates, LiNixCo1−2xMnxO2 materials stand prominently, especially LiNi1/3Co1/3Mn1/3O2, which have been incurring extensive investigations and been put successfully in commercial scale-up use in recent years.
When the I(003)/I(104) ratio >1.2, the materials trends to a well- layered structure with small cation mixing.
Journal of Fluorine Chemistry, 2007, 128: 139-143
Online since: February 2012
Authors: Li Hua Hong, Yong Lu Chen
Materials and Methods Five samples with the dimensions of 1cm were cut out from the galvanized cables randomly and respectively which were offered by five manufacturers.
Keita, N.Shun-ichi: Journal of Materials in Civil Engineering, Vol.16, No.1, 2004, P.1
[4] Q.X.Sun: Corrosion and Protection of Materials (Metallurgical Industry Press, China 2004)
Zhao: Journal of South China University of Technology(Natural Science Edition), Vol.35, No.5, 2007, P.104 (in Chinese)
[10] H.J.Wu, J.T.Lu: Journal of Functional Materials, No.11, 2009, P.1860 (in Chinese).
Online since: September 2012
Authors: Kinji Asaka, Tadashi Ihara, Taro Nakamura
It is expected to be one of the most promising materials for artificial muscle and other medical devices.
Proc. 8th SICE System Integration Division Annual Conference: 223-224 [7] Fujiwara N, Asaka K, Nishimura Y, Oguro K, and Torikai E (2000) Preparation of Gold-Solid Polymer Electrolyte Composites as Electric Stimuli-Responsive Materials.
Nishimura, Oguro K, Torikai E (2000) Preparation of Gold-Solid Electrolyte Composites as Electric Stimuli-Responsive Materials.
Materials 12:1750-1754 [9] de Gennes PG, Okumura K, Shahinpoor M, Kim KJ (2000) Mechanoelectric effects in ionic gels.
Journal of Intelligent Material Systems and Structures 14:343-357 [12] Asaka K, Oguro K, Nishimura Y, Mizuhata M, and Takenaka H (1995) Bending of Polyelectrolyte Membrane-Platinum Composites by Electric Stimuli I.
Online since: May 2021
Authors: Moses E. Emetere, T.O.C. Adedayo, Sunday Adeniran Afolalu
This is a naturally biodegradable material that decays over time.
Photovoltaic Solar Spectral Filtering Using Bio-Filters, Academic Journal of Interdisciplinary Studies, 9:148 [2].
Yu X., Shou W., Mahajan B.K., Huang X., Pan H., (2018), Materials, processes, and facile manufacturing for bioresorbable electronics: A review.
Ishikawa Tsutomu, Masataka Masuda, Yasunori Hayashi (1999), Characterization on the Electrical Properties of Copper Nitride Thin Films and the Effects of Hydrogen Implantation, The Japan Institute of Metals and Materials, 63(5): 621-624 [15].
Liu X., Shi M., Luo Y., Zhou L., Loh Z.R., Oon Z.J., Lian X., Wan X., Chong F.B.L., Tong Y., (2020), Degradable and Dissolvable Thin-Film Materials for the Applications of New-Generation Environmental-Friendly Electronic Devices.
Online since: September 2014
Authors: Yong Jiang, Jiu Ren Yin, Wen Fu Zeng, Yan Huai Ding
Handbook of polymer matrix composite materials[M].
Preparation and properties of EP/ZnO hybrid materials[J].
Polymer Materials Science & Engineering, 2005, 21(5):261-265
Journal of Materials Engineering, 2011, (12): 78-82
Chinese Journal of Inorganic Chemistry, 2010, 26(1): 96-100.
Online since: July 2011
Authors: Li Qun Chen, Zheng Chen Qiu
Dunand: Materials Science and Engineering A, 335 (2002) 128 [3] X.
Liu: Materials Science and Engineering A, 490 (2008) 157 [9] C.
Eow: Materials Science and Engineering A, 317 (2001) 241 [13] O.
Hu: Materials Science and Engineering A, 491 (2008) 159 [19] N.
Wang: Computational Materials Science, 39 (2007) 557 [28] S.
Online since: October 2010
Authors: Li Ming Feng, Teng Gai, Xue Wei
Influence of Carbon Nanotubes on the Performances of LiFePO4 Liming Feng 1,a, Teng Gai 1,b, Xue Wei 1,c 1School of Materials Science and Engineering,Shandong Jianzhu University,Jinan 250101,China aflm@sdjzu.edu.cn, bgaiteng666@163.com,cwxwfc@126.com Key words: LiFePO4, Carbon nanotubes, Lithium battery.
But using CNTS to modify LiFePO4 materials is seldom reported at home and abroad.
Experiment Methods Experiment materials.
Materials Letters, Vol.61, no25, 4700-4702, 2007
Chinese Journal of Inorganic Chemistry.
Online since: January 2014
Authors: Xian Zai Yan, Jian Dan Li, Lili Yu, Chun Rong Wang
Acknowledgements This work was financially supported by the National Science Foundation (31000820) and the Jiangxi Provincial Office of Education Science Foundation (GJJ13285 ).
Norskov: Science.Vol 327(2010), p. 278 [3] E.
Zhu: Materials Letters.Vol 58(2009), p. 1427 [5] M.
Raj: Chemistry of Materials.Vol 20(2008), p. 3546 [10] D.
Pradhan: Journal of Colloid and Interface Science.Vol 398(2013), p. 13
Online since: May 2012
Authors: Zong Jian Sheng, Zhen Sen Xu, Qiao Lu, Feng Lian Song
Naiim Habib, Ph.Delaporte, etal, Experimental investigation on laser removal of carbon and tungsten particles, Applied Surface Science. 255 (2009) 5569-5573
[7] Bai Jingcheng, Wu Shuyii, Lee Ansheng, Chu Chenyeon, Filtration of dust in a circulating granular bed filter with conical louver plates (CGBF-CLPs), Journal of Hazardous Materials. 142 (2007) 324-331
[8] Huang Zhicheng, Study on the dust removal and desulfuration equipment with wet method for ceramic industrial spray drying tower, Advanced Materials Research/Renewable and Sustainable Energy. 347-353 (2011) 1272-1275
[14] Ha Gunho, Kim Eungdal, Kim Youngsoo, Lee Jaekeun, Ahn Youngchull, Kim Donggyu, A study on the optimal design of a cyclone system for vacuum cleaner with the consideration of house dust, Journal of Mechanical Science and Technology. 25 (2011) 689-694
[15] Wang Haijun, The Work Principle and Structure of Venturi Tube in Nozzle’ Inner, Journal of Southwest University of Science and Technology. 19 (2004) 41-44.
Online since: March 2012
Authors: Hui Liu, Kang Chen, Bao Bao Li, Cheng Yun Peng
Materials were taken ST14, SS304, DDQ, and Al from the DYNAFORM material library, were identified as 1 #, 2 #, 3 #, 4 #.
Deep drawing process needs plastic deformation and the slip of materials.
Formability of Materials - 2000A.D., JRNewby and BAHiemeier eds., ASTMSTP753, American Society for Testing and Materials, (1982), p3-18
[3] Kichan Son and Hyunbo Shim: Journal of Materials Processing Technology Vol. 134(2003), p92-98
[4] E Da-xin and Mizuno Takaji: Materials Science and Technology Vol. 17(2009), p351-354(In Chinese)
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