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Due to their tunable structures, these materials exhibit unique selectivity for various analytes.
Porous nanostructured carbon materials exhibit unique structural features such as high surface area and excellent physicochemical stability and have been of significantly scientific and technological interest because of their vital importance in many energy related applications.
The resultant TiO2 materials exhibit unique morphology, in which the curly nanofibers with the diameter about 90 nm interweave each other for assembling hierarchical mesh structures and there are abundant grooves on the surface of the nanofibers.
According to NIOSH, materials exhibit unique properties at the nanoscale that affect their physical, chemical, and biological behavior.
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A wide range of different, new materials exhibiting unique properties has been produced via ADMET polymerization since its development.
Among carbon structured materials, carbon solid and hollow spheres represent a special class of materials that exhibit unique properties such as low weight, thermal insulation and high compressive strength.
Nanotechnology's popularity has soared because at the nanoscale materials often exhibit unique electrical, chemical, and optical properties.
Since nanosized materials often exhibit unique properties that may offer significant advantage for biomedical applications (Jain 2008; Martin and Kohli 2003), it is sensible to investigate if nano-alum will be more efficacious in enhancing anticancer immune response than conventional alum.
The non-metallic friction materials without abrasives exhibit unique friction performance and phenomena compared with the non-metallic friction materials with abrasives and semi-metallic brake linings.
These materials have enormously large and highly reactive surface area, so these materials exhibit some unique properties in comparison to bulk materials.
Multiferroic materials exhibit some unique characteristics with the co-existence of at least two kinds of long-range ordering among ferroelectricity (or antiferroelectricity), ferromagnetism (or antiferromagnetism), and ferroelasticity.
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