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Articles
Application Note: Preparation of Monodisperse Polymer Spheres
Monodisperse, surfactant-free polymer spheres for use as colloidal crystal templates can be easily obtained in reasonably large quantities. Typical synthesis methods for poly(methyl methacrylate) (PM...
Melissa A. Fierke
Material Matters 2008, 3.1, 13.
Keywords: Emulsion polymerization, Polymerization reactions, Precipitation, Sol-gel
Mesoporous Oxides and Their Applications to Hydrogen Storage
Solid-state hydrogen storage is attractive from a technological point of view, but has encountered tremendous challenges in terms of practical storage capacity and kinetics.1-3 Hydrogen sorption, whe...
Arlon J. Hunt1, Karl Gross2, Samuel S. Mao1
Material Matters Volume 4 Article 2
Keywords: Addition reactions, Adsorption, Catalysis, Chemical vapor deposition, Condensations, Deposition, Diffusion, Insecticides, Microscopy, Nanomaterials, Scanning electron microscopy, Size-exclusion chromatography, Sol-gel, Substitutions, Transmission electron microscopy
Mesoporous Titanium Dioxide Thin Films
Titanium dioxide (TiO2) is an important n-type semiconducting material that shows interesting characteristics such as photoswitchable surface wettability, high photocatalytic activity, bistable elect...
Jinshu Wang, Junshu Wu, Hongyi Li
Material Matters, Volume 7, Number 2, 2–6
Keywords: Adsorption, Building blocks, Catalysis, Ceramics, Condensations, Cosmetics, Degradations, Diffraction, Eliminations, Evaporation, Materials Science, Oxidations, Polymerization reactions, Semiconductor, Separation, Sol-gel
Surface-enhanced Solar Energy Conversion Systems Using Gold and Silver Nanoparticles
Sustainable, environment-friendly, and clean energy sources with sufficiently high production efficiency for practical application are highly desirable to meet the energy challenge of the 21st centur...
Shanlin Pan and Arunava Gupta
Material Matters, 2012 v7, n4
Keywords: Absorption, Catalysis, Chemical vapor deposition, Degradations, Deposition, Diffusion, Electronics, Organic electronics, Photovoltaics, Recombination, Renewable energy, Semiconductor, Separation, Solar cells
Thermoelectric Performance of Perovskite-type Oxide Materials
Lassi Karvonen, Petr Tomeš, Anke Weidenkaff* Laboratory for Solid State Chemistry and Catalysis Department of Mobility, Energy and Environment EMPA-Swiss Federal Laboratories for Materials Science an...
Lassi Karvonen, Petr Tomeš, Anke Weidenkaff
Material Matters, 2011, Volume 6, Number 4, 92–99
Keywords: Catalysis, Ceramics, Combustion, Degradations, Materials Science, Oxidations, Semiconductor, Substitutions
Papers
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1. Chen, J. et al. J. Mater. Sci. 31, 3497, (1996)
2. Gu, H. et al. Rengong Jingti Xuebao 25, 54, (1996)
3. Wang, Z. et al. Mater. Lett. 43, 87, (2000)
Chem. Abstr. 125, 73450v, (1996)
Beil. 1,IV,1514
Fieser 15,316
Aldrich MSDS 1, 1711:C / Corp MSDS 1 (2), 3356:A / FT-IR 2 (3), 4490:D / FT-IR 1 (2), 1281:B / NMR-Reference 2 (2), 981:D / RegBook 1 (2), 3055:K / Sax 6, 602 / Structure Index 1, 484:D:5 / Vapor Phase 3, 1689:B