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The surface morphology, coating thickness and tribological properties were tailored by adjusting the PEO process parameters.
Furthermore, the density and dimension of the interfacial fibers were tailored by adjusting the annealing temperatures.
The extent of oxidation of graphite oxide (GO) was tailored by adjusting the amount of oxidant during oxidation.
The W concentration gradient along depth of the film was tailored by adjusting the W target current and deposition time.
The results demonstrated that the layer structure of the modified surfaces can be tailored by adjusting the treatment conditions.
This observation indicates that the piezopotential properties of BNHCs can be efficiently tailored by adjusting their cell length.
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Furthermore, we found that the bandwidth can be tailored by simply adjusting the total pulse length.
The spectral properties of selective coatings can be tailored by carefully adjusting the composition and thickness of each layer.
The MnO2 nanosheets can grow directly on the CoO precuor nanowires without any pretreatment, and its thickness on the CoO nanowire arrays (NAs) can also be tailored by easily adjusting the second step hydrothermal time.
The fine dual-sized hierarchical surface structure and fluorine content can be tailored simultaneously by adjusting the silica sol charge at Pickering emulsion polymerization step.
Since the electromagnetic properties of fiber reinforced polymeric composite can be tailored effectively by adjusting its composition, the polymeric composite is a plausible material for fabricating the radar absorbing structures (RAS) of desired performance.
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