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Due to the reinforced thermal stability, fortified mechanical properties, high toughness and high melt elasticity, the designed composites are capable of being used in several applications such as packaging, thermal sealing, thermoforming, and melt spinning of plastics.
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The hydrogel composites were capable of simultaneously releasing VEGF and dexamethasone with approximately zero order kinetics.
This composite is capable of compounding earnings at 15% over three years.
The composite is capable of both structural and electrical healing via NIR irradiation.
Thus HAP/TE/GAC composite is capable of maintaining inherent properties of GAC while enhancing its capacity to remove heavy metals and bacterial contaminants.
The composite was capable of delivering a high specific capacitance of 314 F g−1 with excellent cycling stability.
The composite is capable of maintaining high stability under severe hydrothermal conditions and even in the acidic medium.
The HAP/TE/GAC composite is capable of maintaining the natural function of GAC in addition to removal of bacterial contaminants and heavy metals, which can be used as a point-of-use water filter material.
The CdS-SWCNT composite is capable of generating a photocurrent from visible light with unusually high efficiencies [47, 103], in which the luminescence of CdS is quenched by SWCNT.
In addition this composite is capable of removing bacteria and hence offsetting any reduced effect in metal ion removal and proving to be a multifunctional nanocomposite to purify water.
Nonetheless, this chitosan-modified MWCNTs-COOH composite is capable of enhancing the adsorption capacity, as well as shortening the adsorption reaction time needed for efficient Cr (VI) removal to occur.
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