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NIST only participates in the February and August reviews. Research on photovoltaics focuses on the development of new and improved device characterization methods for various cell technologies and
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to the design, construction, and operation of high-performance buildings that maintain good indoor air quality and use low levels of energy. Specifically, the goals of this research are to (1) develop methods
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neutron scattering (SANS), in conjunction with other lab techniques to investigate the structural changes at nanometer scale using the time-resolved neutron scattering methods on a wide range of soft matter
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for characterization (higher-order structure MS methods, top down sequencing, peptide mapping, glycoanalysis, PTM’s, size/charge heterogeneity), stability and associated phenomena (aggregation, accelerated stability
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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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include particle characterization (including protein aggregates) for biotherapeutics, and cell viability measurements for cell-based therapies and cell-based biomanfacturing. A key method is to perform
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. At NIST, we use large-geometry SIMS instruments to develop new particle analysis methods, improve analytical accuracy and reproducibility, and collaboratively develop new microparticle reference materials
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are often destructive, insufficient in resolution and sensitivity, and are subject to bias inherent in the measurement process. New methods for quantitative, in situ characterization are essential for gaining
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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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to predict materials properties is essential to improve materials design methods. This research will focus on the development and integration of first principle calculations; atomistic simulations; and/or