Louis A. Madsen, Ph.D.

Chemistry Virginia Polytechnic Institute and State University, Blacksburg, VA, United States 
Nuclear Magnetic Resonance
"Louis Madsen"


Mean distance: 9.09


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Daniel P. Weitekamp grad student 2002 Caltech
 (Force -detected NMR in a homogeneous field: Experiment design, apparatus, and observations.)
Edward T. Samulski post-doc 2002-2006 UNC Chapel Hill


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Sudip Chowdhury grad student 2006-2011 Virginia Tech
Kyle G. Wilmsmeyer grad student 2012 Virginia Tech
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Hegde M, Yang L, Vita F, et al. (2020) Strong graphene oxide nanocomposites from aqueous hybrid liquid crystals. Nature Communications. 11: 830
Fox RJ, Yu D, Hegde M, et al. (2019) Nanofibrillar Ionic Polymer Composites Enable High Modulus Ion-Conducting Membranes. Acs Applied Materials & Interfaces
Wang Y, He Y, Yu Z, et al. (2019) Double helical conformation and extreme rigidity in a rodlike polyelectrolyte. Nature Communications. 10: 801
Wang Y, Chen Y, Gao J, et al. (2016) Highly Conductive and Thermally Stable Ion Gels with Tunable Anisotropy and Modulus. Advanced Materials (Deerfield Beach, Fla.)
Li T, Murphy S, Kiselev B, et al. (2015) A New Interleukin-13 Amino-Coated Gadolinium Metallofullerene Nanoparticle for Targeted MRI Detection of Glioblastoma Tumor Cells. Journal of the American Chemical Society. 137: 7881-8
Xue L, Kelkar SS, Wang X, et al. (2015) A theranostic polycation containing trehalose and lanthanide chelate domains for siRNA delivery and monitoring Rsc Advances. 5: 74102-74106
Jangu C, Savage AM, Zhang Z, et al. (2015) Sulfonimide-Containing Triblock Copolymers for Improved Conductivity and Mechanical Performance Macromolecules. 48: 4520-4528
Kidd BE, Forbey SJ, Steuber FW, et al. (2015) Multiscale Lithium and Counterion Transport in an Electrospun Polymer-Gel Electrolyte Macromolecules. 48: 4481-4490
Gao J, Wang Y, Norder B, et al. (2015) Water and sodium transport and liquid crystalline alignment in a sulfonated aramid membrane Journal of Membrane Science. 489: 194-203
Pozo-Gonzalo C, Howlett PC, Hodgson JL, et al. (2014) Insights into the reversible oxygen reduction reaction in a series of phosphonium-based ionic liquids. Physical Chemistry Chemical Physics : Pccp. 16: 25062-70
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