Brad G. Hauser, Ph.D.
Affiliations: | 2012 | Chemistry | Northwestern University, Evanston, IL |
Area:
molecular materials and supramolecular assembliesGoogle:
"Brad Hauser"Mean distance: 8.67 | S | N | B | C | P |
Parents
Sign in to add mentorJoseph T. Hupp | grad student | 2012 | Northwestern | |
(Metal Organic Frameworks and Microporous Polymers as Carbon Capture Materials: Effects of Functionality and Alkali Metal Cation Incorporation.) |
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Publications
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Bagabas AA, Frasconi M, Iehl J, et al. (2013) γ-Cyclodextrin cuprate sandwich-type complexes. Inorganic Chemistry. 52: 2854-61 |
Hauser BG, Farha OK, Exley J, et al. (2013) Thermally enhancing the surface areas of yamamoto-derived porous organic polymers Chemistry of Materials. 25: 12-16 |
Bae YS, Hauser BG, Colón YJ, et al. (2013) High xenon/krypton selectivity in a metal-organic framework with small pores and strong adsorption sites Microporous and Mesoporous Materials. 169: 176-179 |
Farha OK, Eryazici I, Jeong NC, et al. (2012) Metal-organic framework materials with ultrahigh surface areas: is the sky the limit? Journal of the American Chemical Society. 134: 15016-21 |
Farha OK, Wilmer CE, Eryazici I, et al. (2012) Designing higher surface area metal-organic frameworks: are triple bonds better than phenyls? Journal of the American Chemical Society. 134: 9860-3 |
Lu G, Li S, Guo Z, et al. (2012) Imparting functionality to a metal-organic framework material by controlled nanoparticle encapsulation. Nature Chemistry. 4: 310-6 |
Wilmer CE, Leaf M, Lee CY, et al. (2012) Large-scale screening of hypothetical metal-organic frameworks. Nature Chemistry. 4: 83-9 |
Weston MH, Farha OK, Hauser BG, et al. (2012) Synthesis and metalation of catechol-functionalized porous organic polymers Chemistry of Materials. 24: 1292-1296 |
Eryazici I, Farha OK, Hauser BG, et al. (2012) Two large-pore metal-organic frameworks derived from a single polytopic strut Crystal Growth and Design. 12: 1075-1080 |
Alsobrook AN, Hauser BG, Hupp JT, et al. (2011) From layered structures to cubic frameworks: Expanding the structural diversity of uranyl carboxyphosphonates via the incorporation of cobalt Crystal Growth and Design. 11: 1385-1393 |