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Abstract
This seminar will review several intriguing quantum and classical size effects on thermal and thermoelectric properties of nanostructured and complex materials. Topics to be discussed include the Casimir limit of lattice thermal conductivity of nanowires and nanocomposites, the interplay between phonon-interface scattering and crystal complexity in III-V and silicide nanostructures, andthe effects of lateral size and interface interaction on thermal transport in carbon nanotubes and graphene. The potential applications of these advanced materials will be discussed using the examples of two currentteam effortson developing thermoelectric waste heat recovery devices based on complex silicides and high-energy density thermal energy storage systems employing a graphene foam architecture. The seminar will be concluded with an introduction of the graduate study program of Texas Materials Institute.
Biography
Li Shi is a professor of mechanical engineering and materials science and engineering at the University of Texas at Austin. He received the B.E. degree in Thermal Engineering from Tsinghua University, Beijing in 1991, M.S. degree from Arizona State University in 1997, and Ph.D. degree in Mechanical Engineering from University of California at Berkeley in 2001. Dr. Shi was a Research Staff Member at IBM Research Division from 2001 to 2002 before he joined the Texas faculty. He received the CAREER award from the National Science Foundation in 2003, the Young Investigator Award from the Office of Naval Research in 2004, the ASME Transaction Journal of Heat Transfer Outstanding Reviewer Award in 2005, and theMyron L. Begeman Fellowship in Engineering at UT Austin since 2007.
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