Exact(8)
The zinc oxide has most attention because of its excellent optical and electrical properties compared with the ITO film.
It was found that combination-coatings of cerium and cobalt exhibit superior electrical properties compared to pure cobalt coatings.
Nanocomposites composed of nanofiller reinforcement and a polymer matrix are currently subject to intense research due to possible improvements in physical, mechanical, and/or electrical properties compared to neat polymer.
High-strength carbon nanotube (CNT) fibers are strongly desired as they offer both excellent mechanical and electrical properties compared to traditional fiber materials.
The self-assembled RGO 3D structures exhibited favorable mechanical and electrical properties compared with conventional 3D self-assembled graphene- or carbon-based structures.
Here we show that the graphene sheets in reduced graphene oxide papers (rGOPs) can be cross-linked by electron-irradiation-induced sp3 carbon atoms, resulting in significant enhancements in both the mechanical and electrical properties compared to unirradiated rGOPs.
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We believe Sb2S3 zero-dimensional materials must have unusual optical and electrical properties comparing to multidimensional materials because of the quantum confinement effect.
The foamed polymers' structure including nanoparticles as nanofillers has been improved with reduced flammability properties, reduced gas permeability, increased strength-to-weight ratio, increased impact resistance, long fatigue life, and better thermal and electrical insulation properties compared to unfoamed polymers.
At the same time, at sub-Tg temperatures composites are characterized by superior electrical insulation properties compared to pristine matrix material.
Engineering thermoplastics have a combination of excellent thermal, mechanical, electrical, and chemical properties compared to commodity resins.
Spinel-type ferrite nanomaterials evoke increased interest due to their high optical, structural, electrical, and magnetic properties compared to their microcrystalline analogs.
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