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Carbon nanofiber (CNF) and carbon nanotube (CNT) composites have enhanced mechanical and electrical properties that make these composites desirable for antistatic and electronic dissipation technology.
Stefan explained his creative process, saying, "When I make these composites I try and cram as many different foreign pieces into one thing to try and get a really original picture, something that gets closest to how things look in my head.
Use of less SWCNT could cause less toxicity, which could make these composites useful for BTE applications.
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These films were explored for use as the photonic layer in all-optical time-to-space converters and proved successful at increasing the optical response of the intercalated dyes to a point that would make these composite films applicable for use as the photonic layer.
The use of wet layup process under ambient conditions makes these composites susceptible to moisture and environment-related deterioration.
What's more, these composites are shown to have more competitive thermal conductivities as compared to other kinds of carbon/aluminum composites, which makes these composites promising candidates to be used for thermal management.
Taking advantage of the flexibility, large surface area, ease of production, and surface modification of the electrospun polymer nanofibers, the combination of Au/Ag nanostructures with nanofibers makes these composites versatile platforms for various applications in optics, antibacterial coatings, photovoltaics, and chemical and biological sensors etc.
This makes these composite promising for the use as adsorbents for metal cations from aqueous media.
Copper colloids embedded in oxide glasses strongly modify their optical properties, making these composite materials useful for resonant-type nonlinear optical materials for photonic devices [10].
Structure and function integrated shielding products made of these composites can be used to get the highest shielding effectiveness or highest absorbed power with designed layer angles.
These unique properties make the composite gel membranes suitable for application as electrolyte in rechargeable Li-ion batteries.
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