Author:
Hao Wentao,Zhang Jialiang,Tan Yongqiang,Su Wenbin
Subject
Materials Chemistry,Ceramics and Composites
Reference26 articles.
1. 1 M. A. Subramanian , D. Li , N. Duan , B. A. Reisner , and A. W. Sleight , âHigh Dielectric Constant in ACu3Ti4O12 and ACu3Ti3FeO12 Phases,â J. Solid State Chem., 151 [2] 323â5 (2000).
2. 2 A. P. Ramirez , M. A. Subramanian , M. Gardel , G. Blumberg , D. Li , T. Vogt , and S. M. Shapiro , âGiant Dielectric Constant Response in a Copper-Titanate,â Solid State Commun., 115 [5] 217â20 (2000).
3. 3 C. C. Homes , T. Vogt , S. M. Shapiro , S. Wakimoto , and A. P. Ramirez , âOptical Response of High Dielectric Constant Perovskite-Related Oxide,â Science, 293 [5530] 673â6 (2001).
4. 4 D. C. Sinclair , T. B. Adams , F. D. Morrison , and A. R. West , âCaCu3Ti4O12: One-Step Internal Barrier Layer Capacitor,â Appl. Phys. Lett., 80 [12] 2153â5 (2002).
5. 5 T. B. Adams , D. C. Sinclair , and A. R. West , âGiant Barrier Layer Capacitance Effects in CaCu3Ti4O12 Ceramics,â Adv. Mater., 14 [18] 1321â3 (2002).
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