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DSC Measurements for modified samples show an increase in Tg as compared to unmodified sample.
It was found that plasma modification enhances the antibacterial properties of the membrane in comparison to the unmodified sample.
Almost all of the stearic acid deposited on an unmodified sample disappeared after UV exposure for 12 h.
The degraded, partially charged l-ASNase was evaluated for its in-vitro enzymatic activity showing an insignificant different enzyme activity compared to the unmodified sample.
As compared to the unmodified sample, the copolymer-containing chitosan exhibited the decreases in both water contact angles and the rate of water vapor permeability.
It was concluded that chemical (oxygen insertion) and physical (nanotopography generation) changes, have a significant impact on the biocompatibility in terms of increased hydrophilicity (θw of unmodified sample = 88° ± 2°, θw of 60 min modified sample = 17.6° ± 0.8°) and surface free energy (SFE of unmodified sample = 42.4 mJ/m2, and for 60 min modified sample = 70.1 mJ/m2).
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3-D-perforated BNC showed compressive strength comparable to that of unmodified samples.
However, Their surface area and pore volume was lower than that of unmodified samples.
Inclusion of PDMS provides improved compression stress and strain and toughness over the original unmodified samples, without deterioration on the diffraction efficiency.
Mechanical characterization of both of the modified and unmodified samples has been carried out by means of nano-hardness, wear resistance, friction coefficient and surface roughness measurements.
Even after annealed at 1200 °C for 50 h, the thermal diffusivity of modified coatings still shows a reduction of 25% than unmodified samples.
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CEO of Professional Science Editing for Scientists @ prosciediting.com