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SERS efficiency of the Ag/PS substrates was evaluated using water-soluble cationic porphyrin CuTMPyP4.
The FO performance of resultant TFC membranes based on such substrates was evaluated in FO mode.
The cytotoxicity of the substrates was evaluated with osteoblasts in vitro.
The adhesive strength between the coatings and NdFeB substrates was evaluated by tensile test.
The adhesion of the coatings with different thicknesses on different substrates was evaluated using progressive scratch tests.
The surface free energy of substrates was evaluated by contact angle measurements by the sessile-drop technique.
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For platelet attachment, platelets added to substrates were evaluated under SEM.
Two deposition methods for producing CrN/AlN bilayers on H13 steel substrates were evaluated.
The effects of the oxidation of Si1 − xCx films (x = 0.0125) on Si (100) substrates were evaluated.
The morphological features of the coated substrates were evaluated by scanning electron microscopy (SEM) and atomic force microscopy (AFM).
Except for two tripeptides, Phe-Phe-Phe and Tyr-Tyr-Tyr, the specific activity and kinetics of other substrates were evaluated as follows.
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