个人简介
Professor of Mechanical Engineering, Materials Science & Engineering and Chemistry. B. S., 1997, North Dakota State University. Ph. D., 2001, University of Minnesota. Layer-by-layer assembly of multifunctional polymer nanocomposites. Tailoring nanocomposite microstructure and properties with stimuli-responsive polymers and high aspect ratio nanoparticles. Focused on thermal and transport properties of nanocomposite materials, especially in the areas of thermoelectric energy generation, gas barrier (and separation) and fire prevention.
研究领域
Chemistry of Interfaces/Chemistry of Materials/Chemistry of Polymers
Polymer Nanocomposites
近期论文
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F. Xiang, S. M. Ward, T. M. Givens, J. C. Grunlan, "Structural tailoring of hydrogen-bonded poly(acrylic acid)/poly(ethylene oxide) multilayer thin films for reduced gas permeability", Soft Matter 2015, 11, 1001.
D. Hagen, L. Saucier, J. C. Grunlan, "Controlling effective aspect ratio and packing of clay with pH for improved gas barrier in nanobrick wall thin films", ACS Applied Materials and Interfaces 2015, 6, 22914.
P. Tzeng, E. L. Lugo, G. D. Mai, B. A. Wilhite, J. C. Grunlan, "Super hydrogen and helium barrier of polyelectrolyte nanobrick wall thin film", Macromolecular Rapid Communications 2015, 36, 96.
F. Xiang, S. M. Ward, T. M. Givens, J. C. Grunlan, "Super stretchy polymer multilayer thin film with high gas barrier", ACS Macro Letters 2014, 3, 1055.
B. Stevens, E. Dessiatova, D. Hagen, T. Alexander, C. Bielawski, J. C. Grunlan, "Low temperature thermal reduction of graphene oxide nanobrick walls: Unique combination of high gas barrier and low resistivity in fully organic polyelectrolyte multilayer thin films", ACS Applied Materials and Interfaces 2014, 6, 9942.
A. A. Cain, S. Murray, K. Holder, C. R. Nolen, J. C. Grunlan, "Intumescent nanocoating extinguishes flame on fabric using aqueous polylectrolyte complex deposited in single step", Macromolecular Materials and Engineering 2014, 299, 1180.
G. P. Moriarty, K. Briggs, B. Stevens,b C. Yu, J. C. Grunlan, "Dual stabilizer approach to high thermoelectric power factor nanocomposites: Fully organic materials for waste heat recovery", Energy Technology 2013, 1, 265.