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The simple, low-cost and scalable transformation of metallic nanowires to metallic nanotubes was demonstrated by employing sequential thermal treatments.
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Micron-scale-resolution thermal conductivity mapping on graded compositions created in diffusion-multiple samples can be used to rapidly establish composition-phase-property relationships and to reveal the effects of solid-solutioning, order-disorder transition, compositional point defect, and site preference on thermal conductivity.
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Research highlights? Binding energies for grain boundary sites from 50 <100> symmetric tilt grain boundaries were calculated for vacancies and self-interstitial atoms in Fe. ? Self-interstitial atoms have a larger driving force for binding to grain boundaries than vacancies. 相似文献