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C3H6 selectivity over V/γ-Al2O3 materials is improved by covering the support fully with well-dispersed VOx species.
A previously designed fatigue apparatus to test bending fatigue behaviours of glass fiber reinforced plastic materials is improved in the scope of this research.
It is found that the cyclic performance of the composite materials is improved significantly compared to SiMn alloy and pure silicon.
Thermogravimetric analysis (TGA) and cone calorimetry show the POSS containing epoxy nanocomposites display high ceramic yields, suggesting the flame retardant behavior of the materials is improved by the molecular level dispersion of pendant POSS.
The conductivity of hybrid materials is improved by electrochemical reduction method, exhibiting an outstanding specific capacitance of 14.3 mF cm−2, which is 14 times larger than pristine ones.
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"We'd like to see data being gathered, and see these materials being improved, and we'd like to see new models of learning".
Conversely, the mechanical properties of the polymer materials were improved.
The mechanical properties of the composite materials were improved by either thermal treatment or extrusion process.
As mentioned in the introduction, the PL properties of the materials were improved by Tb doping in SiC nanorods.
Some properties of these materials were improved by applying suitable concentration of CNTs.
Differential scanning calorimetry (DSC) results showed that thermal stability of the materials was improved.
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