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Results for “iron/analysis for trace amounts of polonium-210 and radium-226 by α spectroscopy”
Search indexed NASA NTRS and DOE OSTI research on propulsion, heat transfer, battery materials and energy systems. Follow report and document links to the original sources.
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EVALUATION OF ALTERNATIVE CREEP-FATIGUE METHODS FOR LIFE EXTRAPOLATION
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Initial Characterization of Unirradiated Concrete And Summary of Stainless Steel Weld Harvesting from Ringhals Unit 2 in FY25
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Effect of Composition and Pressure on Diamond Formation Timescales from Hydrocarbon Demixing at Icy Planetary Interior Conditions
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Gold Catalyzed Polymerization Reactions of Unsaturated Substrates: Towards New Functional, Recyclable, and Upcycled Aromatic Polymers (Final Report)
The overarching goal of this project lied in the translation of gold (Au) catalyzed small molecule synthetic transformations to the field of polymer science, the generation of new macromolecular structures, and the application of the materials and methodologies produced toward sustainable polymer development and chemical upcycling. Specifically, this project aimed to polymerize monomers based on unsaturated precursors and access novel polymeric materials through the extension of Au catalyzed intermolecular processes. The specific objectives of this project comprised: (1) the extension of Au-catalyzed intermolecular reactions to bifunctional monomers and the polycondensation of diverse nucleophiles; (2) to gain fundamental mechanistic insight into Au-catalyzed polymerizations; (3) the application of these reactions to the synthesis of new classes of aromatic polymers that can be readily and/or selectively deconstructed; and (4) to apply these chemistries to post-polymerization modification (PPM) of commercially relevant polyaromatic substrates, including post-industrial plastics and post-consumer waste.
What's old is new again- an activated charcoal cryosorption pump for the Dragonfly gamma ray spectrometer
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Transducer-free probing of thermal transport in semiconducting molecular and polymer thin films
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Roll-to Roll Manufacturing of Low Cost and Safer Lithium-Ion Batteries
Final technical report
Project Closeout Report: The Surface Chemistry of Plutonium Oxide for Waste Pretreatment
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Hygrothermal aging effects & degradation pathways of acrylate-based adhesive co-polymers for applications in high-performance flat-flex cables
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Formation and Shape Changing of Conductive Helical Ribbons via Deposition of Highly Stressed Films on Mechanically Responsive Substrates
Abstract This work demonstrates that the electrodeposition of highly stressed films on compliant ribbons is a robust process to obtain helical structures with excellent mechanical stability and potentially high thermal and electrical conductance. Electrodeposition on end‐tethered ribbons alters their axial and bending stiffness while imparting mechanical stress to drive the formation of a helix with a microscale diameter and pitch in a controlled and scalable manner. The process generates helices with diameters and pitches between 80 and 200 µm and lengths as large as several millimeters. The approach is amenable to parallel processing a large number of 3D structures on any substrate, including large‐area semiconductor wafers. This phenomenon is explained in terms of the change of stress gradients as material is added. Applications of the fabricated helices include antennas, metamaterials, and slow‐wave structures in frequency ranges not previously attainable.
New X-ray Light Sources, Innovative Pressure Platforms, and Advances in AI: Opportunities for High-Pressure Research
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The role of momentum transfer in the detachment front response to power transients for reactor scale tokamaks
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Surface co-crystallization with an organic single crystal enables vapochromic and luminescent detection of phenols
Single crystals of an organic semiconductor undergo surface co-crystallization with phenol vapors, producing color and luminescence changes. The process is reversible, enabling solid-state sensing through hydrogen bonding at the crystal surface.
Distinct anharmonic characteristics of phonon-driven lattice thermal conductivity and thermal expansion in bulk MoSe 2 and WSe 2
Machine-learning molecular dynamics simulations pave the way to completely treat the anharmonicity of phonons. Low-energy anharmonic modes in transition-metal dichalcogenides drive the thermal and transport properties.
Universality classes of thermalization for mesoscopic Floquet systems
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Tensor Methods A Unified and Interpretable Approach for Material Design
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