Advances and Applications in Electroceramics II: Ceramic by K. M. Nair, Shashank Priya
By K. M. Nair, Shashank Priya
With contributed papers from the 2011 fabrics technological know-how & expertise symposia, it is a necessary one-stop source for realizing an important concerns within the advances and functions of electroceramics. Logically prepared and thoroughly chosen, the articles hide the topics of the symposia: Magnetoelectric Multiferroic skinny motion pictures and Multilayers; Dielectric Ceramic fabrics and digital units; and Multifunctional Oxide. an important reference for presidency labs and teachers in mechanical and chemical engineering, fabrics and or ceramics, and chemistry.Content:
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Additional info for Advances and Applications in Electroceramics II: Ceramic Transactions, Volume 235
Two candidate materials, constantan and undoped-Bi2Te3 were circulated between 12 laboratories actively involved in thermoelectric research. The details and results from this survey are presented elsewhere [10, 11]. As a result of the round robin study, Βΐ2Τβ3 was chosen as the prototype SRM. 0 mm) of non-stoichiometric bismuth telluride (n-type, Te rich, Bi/Te ratio approximately 2/3, formula Βΐ2Τβ3+χ) (Fig. 5). The SRM artifacts were custom prepared (involving ingot solidification, cutting and polishing of the bar-shaped pieces, and metal coating of their ends) for NIST by Marlow Industries, Inc.
N. Tran, C. Caylor, N. Dilley, A. Downey, B. Edwards, N. Eisner, S. Ghamaty, T. Hogan, Q. Jie, Q. Li, J. Martin, G. Nolas, H. Obara, J. Sharp, R. Venkatasubramanian, R. Willigan, J. Yang, and T. Tritt, Round-Robin Studies of Two Potential Seebeck Coefficient Standard Reference Materials, Appl. Phys. A, (Materials Science & processing), 94, 231-234 (2009). "Z. Q. J. Lu, N. D. Lowhorn, W. Wong-Ng, W. Zhang, E. Thomas, M. Otani, M. Green, T. N. Tran, C. Caylor, N. Dilley, A. Downey, B. Edwards, N.
K. , Mechanical Division Report No 2195 AD257897 (1961). [Bridgman] 5 M. Otani, E. Thomas, W. Wong-Ng, P. K. -S. Chang, N. D. Lowhorn, M. L. Green, and H. Ohguchi, A High-throughput Screening System for Thermoelectric Material Exploration Based on a Combinatorial Film Approach, Jap. J. Appl. Phys, 48, 05EB02 (2009). 6 M. D. K. Schenck, W. Wong-Ng, and M. Green, A High-throughput thermoelectric Screening Tool for Rapid Construction of Thermoelectric Phase Diagrams, Appl. Phys. , 91, 132102-132104 (2007).