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As a result of this surface modification, the surface hardness of UHMWPE substantially increased.
In addition, an interesting phenomenon was found that, without any additional chemical modification, the surface with micro-nano structures underwent a wettability transition from super-hydrophilicity to super-hydrophobicity during the storage in air.
After acrylate modification, the surface tension of silicone release films increased from 19 21 mN/m (before acrylate modification) to 30 mN/m and the release force increased from 8.1 g/in.
In order to estimate the extent of surface modification, the surface energies of the polymer surfaces exposed to DC glow discharge have been determined by measuring contact angles using two standard test liquids of known surface energies.
After modification, the surface area and pore volume mesoporous carbons slightly decrease, while their electrochemical performance have been significantly improved with the increase of the capacitance from 125.7 to 170.1 F g−1 and a non-decayed cycle life over 5000 cycles for HA-C-0.15N.
Without interface modification, the surface of ZnO after oxygen plasma had a low wetting angle to DI water (~26°) - showing a hydrophilic (oleophobic) surface.
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After surface modification, the specific surface area was increased by 10 times over the as-sintered specimen.
Furthermore, modification of the surface roughness of the metallic film will also change the sensitivity of SPR sensor[9, 21, 22].
By factoring in the nanoscale modification of the surface tension near the puddle's edge, the MIT researchers' model resolves many of the inconsistencies in the previous models.
Consequently, the ASO modification changed the surface characteristic of natural fiber from hydrophilic to hydrophobic.
The electrode modification prevented the surface fouling and, simultaneously, enhanced the analytical signal intensity.
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modify the surface
modification the stand
modification the solution
modification the experiment
modification the impedance
modification the duration
modification the region
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modification the root
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