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Imaging Electrophoretic coating

Intensity maps of FTIR spectroscopy images of electrophoretically deposited hydroxyapatite coatings on Ti6Al4V substrates precoated with a sol-gel-derived titania intermediate layer are shown in Figure 7.12 (Paluszkiewicz, Dlugon and Kwiatek, 2012). The images were collected using a Bruker OPUS-65 system. [Pg.325]

Fig. 15 Radiographic images for (a) electrophoretic deposited apatite-wollastonite/chitosan coatings on titanium and (b) uncoated titanium implant in a rabbit tibia after 42 days. Reprinted with kind permission from Sharma et al. [141], Springer Science+Business Media,... Fig. 15 Radiographic images for (a) electrophoretic deposited apatite-wollastonite/chitosan coatings on titanium and (b) uncoated titanium implant in a rabbit tibia after 42 days. Reprinted with kind permission from Sharma et al. [141], Springer Science+Business Media,...
On the other hand, in Figure 51.13 we show a comparison of AFM and TEM images of ordered 2D nanoparticle clusters of Au—Si02 particles. The 15 nm gold particles were coated with about 80 nm silica. They were deposited electrophoretic ally onto TEM grids. As can be seen, the... [Pg.679]

Figure 4 SEM images of (a) CNT/Si02 composite coating obtained by electrophoretic codeposition [64], and (b) four-layer CNT/Ti02 composite coating produced by sequential electrophoretic deposition [65]. (Micrograph (a) reproduced with permission of Maney Publishing (http //www.ingentaconnect.com/content/maney/aac), micrograph (b) reproduced with permission of Springer Dordrecht)... Figure 4 SEM images of (a) CNT/Si02 composite coating obtained by electrophoretic codeposition [64], and (b) four-layer CNT/Ti02 composite coating produced by sequential electrophoretic deposition [65]. (Micrograph (a) reproduced with permission of Maney Publishing (http //www.ingentaconnect.com/content/maney/aac), micrograph (b) reproduced with permission of Springer Dordrecht)...
Figure 10.17 Microelectrodes array formed through chemical etching. (Al) SEM of an 1141-electrode titanium alloy electrode array, (A2) SEM image of a parylene-coated assembly of platinum-coated electrodes (181), (Bl) SEM of an etched optical imaging fiber bundle, and (B2) SEM of a with gold covered and with electrophoretic paint insulated microelectrode array (with permission from reference (34)). Figure 10.17 Microelectrodes array formed through chemical etching. (Al) SEM of an 1141-electrode titanium alloy electrode array, (A2) SEM image of a parylene-coated assembly of platinum-coated electrodes (181), (Bl) SEM of an etched optical imaging fiber bundle, and (B2) SEM of a with gold covered and with electrophoretic paint insulated microelectrode array (with permission from reference (34)).
Figure 19. SEM images of multilayered films of PI nanoparticles on ITO substrates, (a) after 1st electrophoretic deposition, (b) cross section, (c) after further spin coat. Figure 19. SEM images of multilayered films of PI nanoparticles on ITO substrates, (a) after 1st electrophoretic deposition, (b) cross section, (c) after further spin coat.

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See also in sourсe #XX -- [ Pg.14 , Pg.15 , Pg.26 , Pg.26 ]




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Coating, electrophoretic

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