Annealing Effect on the Ionic Conductivity of La0.6-.xLi3xTiO3 Made by Double Mechanical Alloying Method
Annealing Effect on the Ionic Conductivity of La0.6-.xLi3xTiO3 Made by Double Mechanical Alloying Method
出处
《材料科学与工程(中英文B版)》
2014年第4期86-94,共9页
Journal of Materials Science and Engineering B
参考文献21
-
1C.M. Lampert, C.G. Granqvist, Large-area Chromogenics: Materials and Devices for Transmittance Control, 154 SPIE Optical Engineering Press, Bellingham, 1990.
-
2Y. Inaguma, C. Liquan, M. Itoh, T. Nakamura, T. Uchida, H. Ikuta, et al., High ionic conductivity in lithium lanthanum titanate, Solid State Commun. 86 (10) (1993) 689-693.
-
3Y. Harada, T. Ishigaki, H. Kawai, J. Kuwano, Lithium ion conductivity of polycrystalline perovskite La0.67-xLi3x TiO3 with ordered and disordered arrangements of the A-site ions, Solid State Ionic 108 (1998) 407-413.
-
4J.A Alonso, J. Sanz, J. Santamaria, C. Leon, A Varez, M.T, Fernanez-Diaz, On the location ofLi. cations in the fast Li-cation conductor LaosLios Ti03 perovskite, Angew. Chern. 39 (3) (2000) 619-621.
-
5AG. Belous, Lithium ion conductors based on the perovskite La2/3_xLi3xTi03, Journal of the European Ceramic Society 21 (2001) 1797-1800.
-
6J. Ibarra, A. Varez, C. Leon, J. Santamana, Torres-L. M. Martinez, 1. Sanz, Influence of composition on the structure and conductivity of the fast ionic conductors La2/3-xLi3xTiO3 (0.03 :s x:S 0.167), Solid State Ionies 134 (2000) 219-228.
-
7O. Bohnke, H. Duroy, J. L. Forquet, S. Ronchetti, D. Mazza, In search of the cubic phase of the Li+ ion-conducting perovskite La2/3.xLi3xTi03: Structure and properties of quenched and in situ heated samples, Solid State Ionies 149 (2002) 217-226.
-
8T. Okumura, T. Ina, Y. Orikasa, H. Arai, Y. Uchimoto, Z. Ogumi, Effect of average and local structures on lithium ion conductivity in La2l3-xLi3xTi03, J. Mater. Chern. 21 (2011) 10195-10205.
-
9N.N. Dinh, L.D. Trong, P.D. Long, Characteristics of lithium lantanum titanate thin films made by electron beam evaporation from nanostructured Lllo.67-xLi3x rio, target, AJSTD 25 (2) (2008) 1-8.
-
10Y. Inaguma, L. Chen, M. Itoh, T. Nakamura, Candidate compounds with perovskite structure for high lithium ionic conductivity, Solid State Ionies 70171 (1994) 196-202.
-
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-
2张磊,姜训勇,张瑞.机械合金化法制备锂离子电池Si基负极材料及其电化学性能研究[J].功能材料,2012,43(19):2638-2641. 被引量:4
-
3YANG Zhi,XIONG Rui.Effect of Sintering on Grain Boundary Microstructure and Electrical Properties of CaCu_3Ti_4O_(12) Ceramics[J].Wuhan University Journal of Natural Sciences,2015,20(3):255-261.
-
4蔡晓峰.陶瓷晶界及其利用[J].佛山陶瓷,2003,13(7):34-35. 被引量:1
-
5Chen, SQ,Zhou, YC,Li, YY,He, SH.Synthesis and Characterization of Nanocrystalline Ni-Ti and Ni-Cr Powders by Mechanical Alloying[J].Journal of Materials Science & Technology,1997,13(2):86-90. 被引量:2
-
6王连邦,戴晓波,诸鑫炎,毛信表,马淳安.锂离子电池SiAg复合材料研究[J].电化学,2009,15(3):275-279. 被引量:3
-
7童辉,孙育斌,陈永熙,郭丽萍,巫辉,雷家珩.Sol-Gel法合成锂离子筛前驱体LiMn2O4的研究[J].化学与生物工程,2003,20(z1):98-100. 被引量:1
-
8钟红梅,刘茜,孙艳,陆卫.Annealing effect on structure and green emission of ZnO nanopowder by decomposing precursors[J].Chinese Physics B,2009,18(11):5024-5028.
-
9颜声辉,钟永成,方佩莹,李胜华.YAG晶体的γ射线辐照与退火效应[J].人工晶体学报,1990,19(4):331-335. 被引量:4
-
10Titorov Dmitriy Borisovich.The Classical Simulation of Interatomic Bonds on the Grain Boundaries and Joints[J].材料科学与工程(中英文A版),2011,1(6):833-837.