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Description The National Institute of Standards and Technology (NIST) is developing next-generation microfabricated magnetic devices and magnetic resonance imaging (MRI) contrast agents and sensors based
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of hormones in biological matrices. Hormones are essential for major developmental and reproductive processes. Because hormones are highly similar in structure and found at nanomolar concentrations
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the pattern through etching or deposition processes into the functional material of interest. NIL is a simple stamping technique amenable to patterning a wide range of materials. However, NIL often imposes
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of atomically precise patterning to deterministically place dopant atoms in a Si lattice to make prototype atom-based solid state devices and qubits, measurement of the properties of individual atomically precise
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(for variable pressure SEM), the effect of e-beam shape on imaging, the effects of electric fields and charging, and electron detectors. key words Electron detector modeling; Electron scattering; Electron
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patient’s target cells to treat intractable diseases, such as cancer and genetic diseases. Infectious titer is a critical measurement of viral vector function and potency. Such functional measures of viral
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NIST only participates in the February and August reviews. Metals-based additive manufacturing (AM) processes, or metals 3D printing, such as laser powder bed fusion and directed energy deposition
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semiconductors (InAs quantum dots, ErAs nanoparticles) and superconductors (WSi, MoSi, NbTiN) for single-photon detectors, all of which are developed at NIST. In addition to device processing and electrical and
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Description We are using innovative processing to develop novel superconducting materials with enhanced properties for quantum circuit applications. Critical elements for development of these materials
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weathering: Cross-sectional Raman imaging”. Solar Energy Materials & Solar Cells 144: 289-299, 2016 Polymers; Atomic force microscopy; Scanning electron microscopy: Raman microscope; Infrared microscope