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Description Enriched silicon is critical for silicon quantum devices since the 29Si isotope is a leading contributor to qubit decoherence. Enriching silicon leads to long quantum coherence times (T2) measured
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fullerenes and compounds based on fullerenes. In addition, the diffusion of atomic and molecular species is studied in materials such as protonic and ionic conductors. The complementary techniques of infrared
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Obrzut jan.obrzut@nist.gov 301.975.6845 Christopher L. Soles christopher.soles@nist.gov 301.975.8087 Description This research is focused on the development and use of cellulose nanocrystals (CNC) in
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typically employ near-UV (355 nm) lasers. This is problematic because specimens of interest are often nanostructures variously composed of semiconductors, metals, oxides, nitrides--and sometimes even
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. The knowledge of viscosity is essential for designing chemical reactors, pipelines, pumps, refrigeration equipment, etc. Several experimental methods exist and are widely used for measuring viscosity; however
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Anthony Herzing andrew.herzing@nist.gov 301.975.2860 Description Electron scattering is uniquely suited to the atomic-scale characterization of individual nanostructures because electrons have small (nm
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@nist.gov 301.975.6832 Description The goal of this research is to advance vibrational spectroscopy techniques for selective and sensitive characterization of the higher order structure (HOS) of proteins
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Advanced Microwave Microfluidics for Real-time Diagnostics and Chemical Analysis NIST only participates in the February and August reviews. Healthcare is a driving force in the global economy. In
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reviews. Nuclear magnetic resonance (NMR) spectroscopy has several important advantages for quantitative measurements of amount of substance: authentic material is not required for calibration, sample
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spectra and to suggest new avenues for experimental study. As the number of atoms in a molecule increases, calculations become correspondingly expensive. One means of addressing this problem is through