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Advanced Materials for Sustainable Developments, Volume 31, Issue 9


Advanced Materials for Sustainable Developments, Volume 31, Issue 9


Ceramic Engineering and Science Proceedings, Band 533 1. Aufl.

von: Hua-Tay Lin, Andrew Gyekenyesi, Linan An, Sanjay Mathur, Tatsuki Ohji

88,99 €

Verlag: Wiley
Format: PDF
Veröffentl.: 23.11.2010
ISBN/EAN: 9780470944073
Sprache: englisch
Anzahl Seiten: 150

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Beschreibungen

<p>Contributions from three symposia that were part of the 34th International Conference on Advanced Ceramics and Composites (ICACC), inDaytona Beach,FL, January 24-29, 2010 are presented in this volume. The broad range of topics is captured by the symposia titles, which are listed as follows: International Symposium on Ceramics for Electric Energy Generation, Storage, and Distribution (debuted in 2010); Thermal Management Materials and Technologies (debuted in 2010); and lastly, and Advanced Sensor Technology, Developments and Applications (debuted in 2010). These new symposia emerged during this ICACC meeting due to community growth and interest, and thus each of these subject areas were established as stand-alone symposia.</p> <p>The current volume represents 15 contributions from the above listed symposia that embody the latest developments in engineering ceramics for energy technologies, thermal management utilizing either highly conductive or insulating materials, as well as advances regarding the utilization of ceramics for sensors.</p>
<p><i>Preface vii</i></p> <p><i>Introduction ix</i></p> <p>Dye-Sensitized Solar Cell Based on Anodic Ti02 Nanotubes Produced from Anodization in Fluoride-Free Electrolyte 1<br /> <i>Narges F. Fahim and Tohru Sekino</i></p> <p>Self-Propagating High-Temperature Synthesis of Calcium Cobaltate Thermoelectric Powders 15<br /> <i>Sidney Lin, Jiri Selig, Dan F. Smith, Hua-Tay Lin, and Hsin Wang</i><br /> <br /> Effect of Rare-Earth Doping on Thermoelectric Properties of Porous SiC Synthesized by Silicon Carbonization Technique 25<br /> <i>Yusuke Yamamoto, Hiroshi Mabuchi, and Toshiyuki Matsui</i><br /> <br /> Powder Synthesis, Characterization and Sintering Behavior of Lithium Titanate 33<br /> <i>Srinivasan Ramanathan</i></p> <p>Processing of Titania Nanoceramics Via Conventional Sintering, Two-Step Sintering and Two-Step Sintering Assisted by Phase Transformation 41<br /> <i>Zohreh Razavi Hesabi and Mehdi Mazaheri</i></p> <p>Strength of N- and P-Type Skutterudites 49<br /> <i>A. A. Wereszczak, M. E. Ragan, K. T. Strong, Jr., P. J. Ritt, H. Wang, J. R. Salvador, and J. Yang</i></p> <p>Graphite and Ceramic Coated Particles for the HTR 61<br /> <i>Heinz Nabielek and Mark Mitchell</i></p> <p>Development and Characterization of High Conductivity Graphite Foams for Thermal Management Applications 75<br /> <i>A. L. Gyekenyesi, M. Singh, C. E. Smith, P. G. Stansberry, M. K. Alam, and D. L. Vrable</i></p> <p>Integration of Graphite Foams to Titanium for Thermal Management Applications 83<br /> <i>M. Singh, Rajiv Asthana, C. E. Smith, and A. L. Gyekenyesi</i></p> <p>Fabrication of Novel Heat Insulator using Porous Ceramics Materials 91<br /> <i>Kazuma Kugimiya, Mitsue Ogawa, and Hideaki Matsubara</i></p> <p>Detection and Classification of Gaseous Compounds by Solid Electrolyte Cyclic Voltammetry Sensors 99<br /> <i>Grzegorz Jasinski</i></p> <p>Wireless Chemical Sensor for Combustion Species at High Temperatures using 4H-SÍC 109<br /> <i>Geunsik Lim and Aravinda Kar</i></p> <p>High Temperature Acoustic Wave Gas Sensor using Langasite Crystal Resonator 119<br /> <i>Hongbin Cheng, Lifeng Qin, and Qing-Ming Wang</i></p> <p>Synthesis of (La,Nd):Y203 and (La,Yb):Y203 Laser Ceramics and Their Optical Properties 125<br /> <i>Yihua Huang and Dongliang Jiang</i></p> <p>Metal Oxide Nanoelectrodes for Environmental Sensors—ZnO Rods and Particulate Films 131<br /> <i>Yoshitake Masuda, Dewei Chu, Xiulan Hu, Tatsuki Ohji, Kazumi Kato, Masako Ajimi, Makoto Bekki, and Shuji Sonezaki</i></p> <p><i>Author Index 139</i></p>
"The current volume represents 15 contributions from the above listed symposia that embody the latest developments in engineering ceramics for energy technologies, thermal management utilizing either highly conductive or insulating materials, as well as advances regarding the utilization of ceramics for sensors." (PR-Inside.com, 28 February 2011)
<p><b>Dr. Hua-Tay Lin</b>, Distinguished R&D staff member, Group Lead of Ceramic Science and Technology Group, Materials Science and Technology Division, Oak Ridge National Laboratory, is currently focusing researches on mechanical reliability of ceramic components and electronic devices, high-temperature mechanical performance of ceramics and composites, high-temperature steam effects on mechanical reliability of ceramics and environmental barrier coating systems, and engineering of microstructure and properties of ceramics and composites, and coatings. He has served as a PI on numerous programs sponsored by DOE's Office of Distributed Energy, Office of Electricity Distribution Reliability and Transmission, Office of Transportation Technologies, Office of Industrial Technologies, and Office of Power Technologies with frequent collaborations with researchers at institution in the U. S., Japan, Korea, and Europe. Dr. Lin is the pass Chair of the Engineering Ceramics Division of the American Ceramic Society. He currently serves as the Editor-in-Chief of the <i>International Journal of Applied Ceramic Technology</i>. He is a Fellow of The American Ceramic Society. Dr. Lin holds a M.S. and a Ph.D. in Materials Engineering from Auburn University, Auburn, Alabama, and a B.S. in Physics from National Central University, Taiwan.</p>

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