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of film behavior, and stimulus-responsive interfaces and (2) development of new bio- and nanometrology tools. In particular, we creatively harness microfluidic technology, basic microfabrication tools
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electronics; Photoemission; PEEM; Molecular films; Nanotechnology; Interfaces; Electron spectroscopy; Quantum materials; semiconductors
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the development towards this end of efficient, highly parallel software running on commodity hardware. Novel methods to compute the stray field from magnetized material with attention to interface and
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opportunities to interface with researchers at both NIST and at the National Institutes of Health (NIH). Reference Zabow G, Dodd SJ, Koretsky AP: "Shape-changing magnetic assemblies as high-sensitivity NMR
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layers, or interfaces in multilayer systems containing polymers. Recent work includes characterization of failure mode and degradation mechanism of polymeric encapsulation materials in photovoltaic modules
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are developing new methods for characterizing the structure and dynamics of the interface and interphase regions in carbon-based nanocomposite materials and in the overall conductive properties of these polymer
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resource constrained devices such as RFID tags, sensors, and medical devices are widely used to transmit sensitive data through wireless interfaces, which need to be protected using cryptographic methods
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trapping of CNTs at polymer/polymer interfaces. This project aims at quantifying these colloidal behaviors in order to achieve fundamental understanding of the underlying molecular forces. Insight gained can
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to study locally generated carriers and to study their decay and transport across heterointerfaces (p-n junctions, materials interfaces, etc). We seek a researcher to work with us to help develop new tools
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. Furthermore, there is a need to understand how EUV resists may interface with other processing approaches such as block copolymer lithography. This project will utilize chemically sensitive scattering tools