Mechanical and Thermal Properties of Antiperovskite Ti3AlC Prepared by anIn SituReaction/Hot-Pressing Route

Author:

Zhang Xiaowen,Wang Xiaohui,Li Fangzhi,Zhou Yanchun

Publisher

Wiley

Subject

Materials Chemistry,Ceramics and Composites

Reference38 articles.

1. 1 A. L. Ivanovskii , “Ternary Carbides and Nitrides Based on Transition Metals and Subgroup IIIB and IVB Elements: Electronic Structure and Chemical Bonding,” Russ. Chem. Rev., 65 [6] 499-518 (1996).

2. 2 W. S. Kim , E. O. Chi , J. C. Kim , H. S. Choi , and N. H. Hur , “Close Correlation Among Lattice, Spin, and Charge in the Manganese-Based Antiperovskite Material,” Solid State Commun., 119, 507-10 (2001).

3. 3 E. O. Chi , W. S. Kim , and N. H. Hur , “Nearly Zero Temperature Coefficient of Resistivity in Antiperovskite Compound CuNMn3,” Solid State Commun., 120, 307-10 (2001).

4. 4 T. He , Q. Huang , A. P. Ramirez , Y. Wang , K. A. Regan , N. Rogado , M. A. Hayward , M. K. Haas , J. S. Slusky , K. Inumara , H. W. Zandbergen , N. P. Ong , and R. J. Cava , “Superconductivity in the Non-Oxide Perovskite MgCNi3,” Nature, 411, 54-6 (2001).

5. 5 E. O. Chi , W. S. Kim , N. H. Hur , and D. Jung , “New Mg-Based Antiperovskites PnNMg3 (Pn=As, Sb),” Solid State Commun., 121, 309-12 (2002).

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