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The high interfacial shear stress calculated, about an order of magnitude higher than micro fiber reinforced composites, is believed attributed to intimate contact between the two solid phases at the molecular scale.
The main reason for good dispersibility of these novel functionalized CNF composites is believed to come from their overall nanostructured morphology.
The wrinkled surface texture of the GO and rGO sheets in the composites is believed to ensure mechanical interlocking and load transfer in polymer composites (Hernández et al. 2012; Rafiee et al. 2010; Stankovich et al. 2006).
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The magnetic and mesoporous bioactive glass composites are believed to be potentially applicable for selectively targeted drug delivery and hyperthermia treatment of bone tumors.
The segregation of Y3+ in single phase Y-TZP and the glass phase present at triple points in the composites was believed to be responsible for the different grain growth behavior.
Recently developed ACP-filled bioactive composites are believed to be effective anti-demineralizing/remineralizing agents for the preservation and repair of tooth structures.
The CF/Fe3O4/cement composite is believed to be a promising material for high EMI shielding.
These superior the best up to now performances of the composite are believed to be the cooperative result of the 3D conducting network, formed by the flexible and planar graphene nanosheets, and the nanoscale sizes of the carbon-coated Li2FeSiO4 particles.
Transmission electron microscopy revealed high matrix dislocation density in the composite surface that is believed to be largely responsible for such significant properties improvements.
The higher current intensity for the methanol oxidation on the catalyst with the CNF/HPANI composite as support is believed to be related to its core/shell carbon fibrous nanostructure with N-doping.
As shown in Fig. 5b, in the CA solution, the attraction force generated between the positive charges at the solution surface and negative charges carried by chloride ions in the CA chain helps the formation of the CA/TPU composite jet and is believed to be beneficial to the co-electrospinning process.
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