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Composites with higher flexural properties were evaluated under impact loading via one-way analysis.
Small aqueous cores formed smaller particles with lower ID/IG values after pyrolysis yielding composites with higher discharge capacities.
Finally, thermogravimetric analysis showed that the hybrid composites with higher whisker content exhibit good heat resistance properties.
The presence of MWCNTs in low quantity enhanced MG-63 osteoblast-like cell attachment and proliferation compared to composites with higher concentration of MWCNTs.
The addition of Miscanthus fibres to the polymer results in composites with higher impact absorbance and loading than those of standard Mater-Bi.
It was demonstrated that the synthesized Ag-carrying nanohybrid composites with higher surface contacted areas were significantly inhibited the activity of plasmid DNA against bacterial resistance.
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Composites with high HAP content displayed high compressive strength and a fast rate of degradation.
Moreover, infiltrating the scaffolds with tough polymers leads to composites with high crack initiation toughness KIC.
The highest diffusion coefficients and thickness swelling were found in composites with high wood contents and large particles.
It was found that the composites with high content of WF had higher degradation rate.
Composites with highest hemp to binder ratio show steadily increasing strength with deformation.
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