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The modified BaTiO3 nanoparticles exhibited homogeneous dispersion in the ferroelectric polymer poly vinylidene fluoride-co-hexafluoropropylene) (P VDF-HFP)) matrix and strong interfacial adhesion with the P VDF-HFPatrix.
The high mechanical properties of the composite films are mainly due to the homogeneous dispersion and alignment of GO sheets in the polymer matrix and strong interfacial interactions between both components.
The functionalization of graphene with conjugated organosilanes is favorable for improving mechanical and thermal properties of the nanocomposite coatings, which is mainly attributed to the homogeneous dispersion of functionalized graphene in the polymer matrix and strong interfacial interactions between the two components.
Such large increments were due to the effects of excellent homogeneous dispersion of PL-MWCNTs in the Nylon matrix and strong interfacial adhesion within themselves, which is believed to be effects of both oxygenated and nitrogenated functional groups generated on the surface of CNTs during plasma treatment.
SEM analysis of WCH159 adherence to A549 cells showed presence of extracellular matrix and strong attachment of wild type opaque biofilm bacteria (Fig. 7D).
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Among other factors, the results reflected the success of the film "The Matrix Reloaded" and strong sales of DVD's as well as a rebound in advertising at its Turner television networks, including TNT and TBS, Mr. Parsons said.
As confirmed by SEM, XRD, and TEM, f-BN nanosheets were well-dispersed in the TPU matrix and formed strong interfacial interaction with the polymer matrix.
The improved performance of the composite is ascribed to the unique porous structure of the HPC matrix and its strong interaction with sulfur.
This was attributed to excellent impermeable property of GONSs, their full exfoliation, uniform dispersion and high alignment in the PVA matrix and the strong interfacial adhesion between GONSs and PVA matrix.
The enhanced TS and TM resulting from the composites demonstrated (a) the reinforcing effect of finely dispersed high-performance CC throughout the polymer matrix and (b) strong interaction between CC and PVA that ultimately enhances interfacial adhesion.
The improved electrocatalytic activity of Ni1.5Fe0.5P/CF is due to the combined synergistic effects of the high conductivity of CF matrix and the strong interaction between active species and the CF support, as evidenced by a low overpotential of 293 mV to achieve a high current density of 100 mA cm−2 with superior long-term stability for OER.
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