Jaime Grunlan
0000-0001-5241-9741
Texas A&M University
120 papers found
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Stretchable Gas Barrier Achieved with Partially Hydrogen-Bonded Multilayer Nanocoating
Surface Coating for Flame-Retardant Behavior of Cotton Fabric Using a Continuous Layer-by-Layer Process
High gas barrier imparted by similarly charged multilayers in nanobrick wall thin films
Iron-containing, high aspect ratio clay as nanoarmor that imparts substantial thermal/flame protection to polyurethane with a single electrostatically-deposited bilayer
Improving the Gas Barrier Property of Clay–Polymer Multilayer Thin Films Using Shorter Deposition Times
Phosphorous-filled nanobrick wall multilayer thin film eliminates polyurethane melt dripping and reduces heat release associated with fire
Correction to Light-Weight Flexible Carbon Nanotube Based Organic Composites with Large Thermoelectric Power Factors
Oxygen barrier of multilayer thin films comprised of polysaccharides and clay
Precisely Tuning the Clay Spacing in Nanobrick Wall Gas Barrier Thin Films
Exceptionally Flame Retardant Sulfur-Based Multilayer Nanocoating for Polyurethane Prepared from Aqueous Polyelectrolyte Solutions
Fully Organic Nanocomposites with High Thermoelectric Power Factors by using a Dual-Stabilizer Preparation
Flexible latex--polyaniline segregated network composite coating capable of measuring large strain on epoxy
Thermoelectric behavior of organic thin film nanocomposites
Super Gas Barrier and Selectivity of Graphene Oxide-Polymer Multilayer Thin Films
Humidity-Responsive Gas Barrier of Hydrogen-Bonded Polymer–Clay Multilayer Thin Films
Intumescent Multilayer Nanocoating, Made with Renewable Polyelectrolytes, for Flame-Retardant Cotton
Increasing the thermoelectric power factor of polymer composites using a semiconducting stabilizer for carbon nanotubes
Clay–Chitosan Nanobrick Walls: Completely Renewable Gas Barrier and Flame-Retardant Nanocoatings
Improving oxygen barrier and reducing moisture sensitivity of weak polyelectrolyte multilayer thin films with crosslinking
Fine control of carbon nanotubes-polyelectrolyte sensors sensitivity by electrostatic layer by layer assembly (eLbL) for the detection of volatile organic compounds (VOC)
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