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Jones, C.K. Folland, and A. Bevan, 1994: Interdecadal changes of surface temperature since the late nineteenth century, J. Geophys.
The changes of surface properties were characterized by contact-angle measurement and atomic force microscopy (AFM).
Meanwhile, the changes of surface roughness and morphology were observed by atomic force microscopy (AFM).
Isochronal changes of surface morphology and substructure around the exothermic peak temperature were observed by TEM.
The changes of surface properties have been characterized by contact angle measurement and X-ray photoelectron spectroscopy (XPS).
The changes of surface properties were characterized by contact angles, surface energy, X-ray photoelectron spectra and scanning electron microscopy.
The changes of surface chemistry and surface topography induced by CO2 plasma treatment played main roles in improving binding efficiency.
The differences in the response of ethylene glycol and formaldehyde follow well-documented changes of surface CO.
Particular attention was devoted to changes of surface morphology and roughness which was studied with atomic force microscopy and laser confocal microscopy.
The changes of surface chemistry and surface topography of PLGA matrix induced by oxygen plasma treatment played main roles in improving the PLGA binding ability to rhBMP-2.
Finally, the comparison of zeta potential values of inner surface before and after post-treatment also demonstrated the changes of surface electrical property.
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