Selected Recent Publications- Sarah C. Larsen
2007
- Kanthasamy, R.; Larsen, S. C. Visible Light Photoreduction of Cr(VI) in Aqueous Solution Using Iron-Containing Zeolite Tubes. Microporous and Mesoporous Materials, 2007, 100, 340-349.
- Stout, S.; Larsen, S. C.; Grassian, V. H. Adsorption, Desorption and Thermal Oxidation of 2-CEES on Nanocrystalline Zeolites. Microporous and Mesoporous Materials, 2007, 100, 77-86.
2006
- Knagge, K.; Johnson, M.; Grassian, V. H.; Larsen, S. C. Adsorption and Thermal Oxidation of DMMP in Nanocrystalline NaY. Langmuir, 2006, 22, 11077-11084.
- Renaud, J.; Squier, C.; Larsen, S.C. Integration of a Communicating Science Module into an Advanced Chemistry Laboratory Course. Journal of Chemical Education, 2006, 83, 1029-1031.
- Song, W.; Grassian, V. H.; Larsen, S. C. Self-Assembly of Colloidal Silicalite-1 and Copper Coated Silicalite-1 Nanocrystals. Microporous and Mesoporous Materials, 2006, 88, 77-83.
2005
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Li, G.; Jones, C. A.; Grassian, V. H; Larsen, S. C.
Selective Catalytic Reduction of NO2 with Urea in Nanocrystalline NaY Zeolite.
Journal of Catalysis 2005, 234, 401-413.
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Li, G.; Larsen, S. C.; Grassian, V. H.
An FT-IR Study of NO2 Reduction in Nanocrystalline NaY Zeolite: Effect of
Zeolite Crystal Size and Adsorbed Water.
Catalysis Letters 2005, 103, 23-32.
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Song, W.; Woodworth, J.; Grassian, V. H.; Larsen, S. C.
Microscopic and Macroscopic Characterization of Organosilane Functionalized Nanocrystalline
NaZSM-5.
Langmuir 2005, 21, 7009-7014.
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Song, W.; Grassian, V. H.; Larsen, S. C.
High Yield Method for Nanocrystalline Zeolite Synthesis.
Chemical Communications 2005, 2951-2953.
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Saladino, A.; Larsen, S. C.
DFT Calculations of EPR Parameters of Transition Metal Complexes: Implications for
Catalysis.
An invited article in Catalysis Today 2005, 105, 122-133.
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Larsen, S.C.
Applications of Zeolites in Environmental Catalysis.
An invited chapter to appear in Environmental Catalysis;
Grassian, V. H. Ed.; CRC Press: Boca Raton, FL 2005.
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Song, W.; Li, G.; Grassian, V. H.; Larsen, S. C.
Development of Improved Materials for Environmental Applications:
Nanocrystalline NaY Zeolites.
An invited article in
Environmental Science and Technology 2005, 39, 1214-1220.
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Alwy, Y. H.; Li, G.; Grassian, V. H.; Larsen, S. C.
Development of Nanocrystalline Zeolites as Environmental Catalysts.
An invited chapter in Nanotechnology and the Environment;
Karn, B. Ed.; ACS Symposium Series 890;
American Chemical Society: Washington DC, 2005, 277-283.
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Wiench, J. W; Fontenot, C. J.; Woodworth, J.; Schrader, G. L.; Pruski, M.; Larsen, S. C.
A Magnetic Resonance Investigation of Vanadia and Vanadium-Molybdenum Gels Synthesized
with Peroxovanadate Precursors.
Journal of Physical Chemistry 2005, 109, 1756-1762.
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Li, G.; Larsen, S. C.; Grassian, V. H.
Catalytic reduction of NO2 in Nanocrystalline NaY zeolite.
Journal of Molecular Catalysis A: Chemical 2005, 227, 25-35.
2004
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Woodworth, J.; Bowman, M. K.; Larsen, S. C.
Two-dimensional Pulsed EPR Studies of Vanadium-Exchanged Zeolites.
Journal of Physical Chemistry B 2004, 108, 16128-16134.
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Song, W.; Justice, R. E.; Jones, C. A.; Grassian, V. H.; Larsen, S. C.
Synthesis, Characterization and Adsorption Properties of Nanocrystalline ZSM-5.
Langmuir 2004, 20, 8301-8306.
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Song, W.; Kanthasamy, R.; Grassian, V. H.; Larsen, S. C.
Hexagonal, Hollow, Aluminum-Containing ZSM-5 Tubes Prepared From Mesoporous Silica Templates.
Chemical Communications 2004, 1920-1921.
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Song, W.; Justice, R. E.; Jones, C. A.; Grassian, V. H; Larsen, S. C.
Size-dependent Properties of Nanocrystalline Silicalite Synthesized with Systematically
varied Crystal Sizes.
Langmuir 2004, 20, 4696-4702.
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Jones, C. A.; Stec, D.; Larsen, S. C.
Solid State NMR Studies of Reactions of Urea and Nitric Oxide on FeZSM-5 and HZSM-5.
Journal of Molecular Catalysis A: Chemical 2004, 212, 329-336.
- Grassian, V. H.; Larsen, S.C.
Environmental Catalysts Based on Nanocrystalline Zeolites.
An invited chapter in The Dekker Encyclopedia of Nanoscience and Nanotechnology;
Schwarz, J., Contescu, C., Putyera, K. Eds.;
Marcel Dekker Inc. 2004.
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