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Contact angle analysis was conducted by a contact angle meter.
The as-fabricated SLIPS was characterized with SEM, AFM, and contact angle meter.
The hydrophilic property was performed by water contact angle with contact angle meter.
The contact angle results measured on a contact angle meter showed that all coatings belonged to hydrophilic surface.
The material characteristics of the biosensor were verified using contact angle meter and Energy Dispersive Spectrometer EDSS).
Immediately after the modification, the contact angle of a water drop was measured with a contact angle meter.
The microstructure, wettability and chemical composition of the butterfly wing surfaces were investigated by a scanning electron microscope, a contact angle meter and a Fourier transform infrared spectrometer.
The hydrophobic properties and wear-resistance of the coatings were measured by a contact angle meter and evaluated on a pin-on-disk friction and wear tester, respectively.
The highly amphiphobic and tribological properties of the coatings were measured by the contact angle meter and the pin-on-disc tribometer, respectively.
Surface morphology, wettability and the preferred orientation of the coatings were characterized by scanning electron microscopy, optical contact angle meter and X-ray diffractometer (XRD), respectively.
The hydrophobic properties and tribological performances of the coatings were measured with CA-A contact angle meter and evaluated on a ring-on-block wear tester, respectively.
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