International Materials Institute
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Special Lecture:
Nature-guided Nanotechnology for Chemical Tectonics
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Part 1 Thermoelectric Oxide Materials for Electric Power Generation | video | slides |
Part 2 Bio Inspired Materials Tectonics | video | slides |
Lecture 1:
Controlling Light with Nonlinear Optical Glasses and Plasmonic Glasses - Takumi Fujiwara,
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Part 1 Photonic Glass | video | slides |
Part 2 Plasmonics (Abstract) | video | slides (same as above) |
Lecture 2: Sub Tg Relaxation in Thin Glass - Prabhat Gupta,
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Part 1 Review of Phenomenology of Liquid Glass Transition and Relaxation | video | slides |
Part 2 The Enthalpy Landscape View | video | slides (same as above) |
Part 3 Size Effects | video | slides (same as above) |
Lecture 3: Computer simulation of glasses - Walter Kob, Universite Montpellier II, France |
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Part 1 | video | slides |
Part 2 | video | slides (same as above) |
Part 3 | video | slides (same as above) |
Lecture 4: Proton conduction in glass and its application to fuel cell - Masayuki Nogami, Nagoya
Institute of
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Part 1 Proton Conduction | video | slides |
Part 2 Proton Conduction continued | video | slides (same as above) |
Lecture 5:
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Part 1 | video | slides |
Part 2 | video | slides (same as above) |
Lecture 6: Laser patterning of crystals in glass - Takayuki Komatsu,
Nagaoka
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Part 1 | video | slides |
Part 2 | video | slides (same as above) |
Komatsu, et al. published paper: "Patterning of Non-Linear Optical Crystals in Glass by Laser-Induced Crystallization." J. Am Ceram. Soc., 90(3) 699-705 (2007) | ||
Lecture 7: Glass Surfaces and Coatings for Biotechnology - Carlo Pantano, Penn State University, USA | ||
Part 1 Glass surfaces for biotechnology | video | slides |
Part 2 End of Part 1 with questions | video | slides |
Part 3 Silanization of Glass and Applications | video | no slides |
Part 4 Thermochemical Processing Effects on Multicomponent Glass Surfaces | video | slides |
Lecture 8: Vacuum-ultraviolet transparency of silica glass and its relation to processes involving mobile interstitial species - Koichi Kajihara, Tokyo Metropolitan University, Japan | ||
Part 1 UV Transparency of silica glass | video | slides |
Part 2 continued | video | slides (same as above) |
Part 3 continued | video | slides (same as above) |
Lecture 9: Nucleation, Growth and Transparent Glass-ceramics - Edgar Dutra Zanotto, Federal University of Sao Carlos, Brazil | ||
Part 1 Nucleation Theory in Glass | video | slides |
Part 2 Testing of the Critical Nucleation Theory and questions | video | slides (same as above) |
Part 3
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no video | slides |
Part 4 Transparent Glass Ceramics | video | slides |
Lecture 10: Engineered strengthening of glass - Tanguy Rouxel, Université de Rennes, France | ||
Part 1 | video | slides |
Part 2 | video | slides (same as above) |
Part 3 | no video | slides |
Rouxel published paper: "Elastic Properties and Short-to-Medium-Range Order in Glass." J.Am Ceram. Soc.,90 (10) 3019-3039. | ||
Lecture 11: Glass dielectrics for microelectronics and energy applications - Mike Lanagan, Penn State University, USA | ||
Part 1 Dielectic Properties and Metamaterials | video | slides |
Part 2 Metamaterials | video | slides (same as above) |
Part 3 Glass & Glass Ceramics as High Energy Materials | video | slides (same as above) |
Lecture 12: Role of alkoxysilanes for the design of silica-based nanomaterials - Kazuyuki Kuroda, Waseda University, Japan | ||
Part 1 | video | slides |
Part 2 | video | slides (same as above) |
This material is based upon work supported by the National Science Foundation under Grant Number DMR-0844014. International Materials Institute Sinclair Laboratory, 7 Asa Drive, Bethlehem, PA 18015 Tel: 610-758-1112 · e-mail: imi@lehigh.edu Website by Zephyros |