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measurement methods need to be developed to evaluate the filler/nanoparticle polymer interface. The rich interfacial functionality present in new nanofibers based on cellulose and chitin, provide for stress
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, with other polymer and colloidal science tools, to characterize particle or polymer distributions that occur in complex environments. Possible ideas for projects include characterization of Pickering
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RAP opportunity at National Institute of Standards and Technology NIST Incorporating Theory and Domain Knowledge into the Machine Learning of Polymeric Systems Location Material Measurement
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Description We seek to develop a deeper understanding of separation processes involving, e.g., polymer membranes, to improve current technologies by reducing energy input and advancing anti-fouling designs
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RAP opportunity at National Institute of Standards and Technology NIST Characterization of Interfaces and Interphases in Polymeric Material Systems Location Engineering Laboratory, Materials and
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[email protected] 301.975.8701 Description Naturally derived nanosized fillers and polymeric materials are important for the next generation of polymer composites, adhesives, and thin films. These materials
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interests include chemical degradation of plastic, quantification and characterization of plastic polymers in complex environmental samples, and quantification of plastic additives (e.g., UV stabilizers
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., Higgins, C.I., Kotula, A.P., Caplins, B.W., Garboczi, E.J., Killgore, J.P., ACS Appl. Polym. Mater., 2021, 3 (1), 290–298. 3) Suiter, C.L.; Malavé, V.; Garboczi, E.J; Widegren, J.A.; McLinden, M.O., J. Chem
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rheology, morphology, and efficacy in performance for surfactants, polymers, nanoparticles, and biotherapeutics. We seek to extend this platform with new measurement modalities and to develop active learning
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projects will include using X ray and neutron scattering to characterize the fidelity of the block copolymer structure to the template and computer simulations of the underlying polymer physics that direct