正在加载图片...
1366 . Corni et al. Journal of the European Ceramic Society 28(2008)1353-136 118. Sora, 1. N, Pelosato, R. Simone, A, Montanaro, L. Maglia, F. 140. Manriquez, J. and Godinez, L. A, Tuning the structural, electrical and Chiodelli, G, Characterization of LSGM films obtained by electropho optical properties of Ti(Ill-doped nanocrystalline TiO2 films by elec- deposition(EPD). Solid State Ionics, 2006, 177, 1985-1989. trophoretic deposition time. Thin Solid Films, 2007, 515, 3402-3413 119. Matsuda, M, Hosomi, T. Murata, K, Fukui, T and Miyake, M, Fabrica- 141. Valatka, E and Kulesius, Z, TiO2-mediated photoelectrochemical decol- on of bilayered Y SZ/SDC electrolyte film by electrophoretic deposition oration of methylene blue in the presence of peroxodisulfate. J. Appl rted SoFC. J. Power Electrochem,2007,37,415-420. Sources,2007,165,102-107 142. Xiao, X. F and Liu, R. F, Effect of suspension stability on elect 120. Sarkar, P, Yamarte, L, Rho, H. S and Johanson, L, Anode-supported deposition of hydroxyapatite coatings. Mater. Lert, 2006. 2627- tubular micro-solid oxide fuel cell. Int. J. Appl Ceram. Technol, 2007, 4 2632 143. Meng, X. w,Kwon, T.-Y Yang, Y.Z., Ong, J. L and Kim, K -H. Effects of 121. Xu, Z. G. Rajaram, G, Sankar, J and Pai, D, Electrophoretic depositis applied voltages on hydroxyapatite coating of titanium by electrophoretic of YSZ electrolyte coatings for solid oxide fuel cells. Surf. Coat. Technol., deposition. J. Biomed. Mater: Res. Part B-Appl Biomater, 2006, 78B 2006.201.44844488 373-377. 122. Smeacetto, F, Salvo, M. Ferraris, M. Cho, J. and Boccaccini, A.R. 144. Monkawa, A.Ikoma, T. Yunoki, S, Ohta, K. and Tanaka, J. Elec- Glass-ceramic seal to join Crofer 22 APU alloy to YSZ ceramic in planar trophoretic deposition of hydroxyapatite nanocrystal. Bioceramics 18, PTS SOFCs. J. Eur Ceram. Soc.. 2008. 28, 61-68. I and 2 Key Eng Mater, 2006, 309-311. 643-646[Part 1/2]- 123. Zhitomirsky, I. and Petric, A, The electrodeposition of ceramic and 145. Monkawa, A, Ikoma, T, Yunoki, S, Yoshioka, T, Tanaka, J, Chakarov, D organoceramic films for fuel cells. JOM: /. Miner Met. Mater. Soc. 2001 et aL, Fabrication of hydroxyapatite ultra-thin layer on gold surface and its 53(9),48-50. application for quartz crystal microbalance technique. Biomaterials, 2006, 124. Wu, Y. J, Li, J, Tanaka, H. and Kuwabara, M, Preparation of 27,5748-5754. nano-structured BaTiO3 thin film by electrophoretic deposition and its 146. Wang, Z C, Huang, L M, Tang, Y, Ni, Y.J. and Lin, C J, Preparation of characterization. J. Eur. Ceram. Soc. 2005. 25. 2041-2044 Co- YSZ/HAp nano-composite coating on Ti substrate by electrochemical 125. Zhao, J, Wang, X and Li, L, Electrophoretic deposition of BaTiO3 films method. Acta Physico- Chimica Sinica. 2006. 22. 590-595 from aqueous suspensions. Mater. Chem. Phys., 2006, 99, 350-353 147. Wildhack, S and Aldinger, F, Electrophoretic deposition of nanocrys- 126. Dogan, A, Gunkaya, G, Suvaci, E and Niederberger, M, Electrophoretic talline SiC ceramics. Electrophoretic Deposition: Fundamentals and deposition of nano-sized BaTiO3. J. Mater. Sci., 2006, 41, 8196- Applications IL. Key Eng. Mater, 2006, 314, 33-38 148. Oshita, T, Sawaki, Y and Kishimoto, A, Grinding performance of pel- 127. Dogan, A, Gunkaya, G, Suvaci, E and Niederberger, M, Electrophoretic let prepared using nanosize ceria particles. J. Alloys Compd., 2006, 408, deposition of nanocrystalline BaTiO in ethanol medium. Electrophoretic l118-1122. Deposition: Fundamentals and Applications Il. Key Eng. Mater, 2006, 314, 149. Wang, Y and Cao, G. Z, Lit-intercalation electrochemical/electrochromic 133-139 es of vanadium pentoxide films by sol electrophoretic deposition. Tang, F. Q, Sakka, Y and Uchikoshi, T, Electrophoretic deposition of Electrochim. Acta. 2006.. 4865-4872. aqueous nano-sized zinc oxide suspensions on a zinc electrode. Mater. 150. Jang, J. H, Kato, A, Machida, K and Naoi, K Supercapacitor perfor- Res.Bll,2003,38,207-212 mance of hydrous ruthenium oxide electrodes prepared by electrophoretic 9. Zhang, H. M, Cui, Y, Men, Y. G and Liu, X.S., Strong ultraviolet emis- deposition. J Electroche. Soc., 2006, 153, A321-A328 sion from zinc oxide thin films prepared by electrophoretic deposition. J. 151. Jang, J.H., Machida, K, Kim, Y and Naoi, K, Electrophoretic deposition Lumin,2006,121,601-605 EPD)of hydrous ruthenium oxides with PTFE and their supercapacitor 130. Lee, J.-H, Leu, I.-C, Chung, Y.W. and Hon. M.-H.. Fabrication of erformances. Electrochinm. Acta. 2006. 52, 1733-1741 ordered Zno hierarchical structures controlled via surface charge in the 152. Bhave, T. M., Balasubramanian, C, Nagar, H, Kulkarni, S, Pasricha, electrophoretic deposition process. Nanotechnology, 2006, 17, 4445-4450 R Bakare, PP et al, Oriented growth of nanocrystalline gamma fer- 131. Pfrengle, A, von Both, H, Knitter, R. and Hausselt, J, Electrophoretic ric oxide in electrophoretically deposited films. Hyperfine Interact, 2005 deposition and sintering of zirconia layers on microstructured steel sub- 160,199-209. trates.J. Eur Ceram Soc. 2006. 26. 2633-2638 153. Luo, K, Shi, N. L, Cong, H. T and Sun, C, Electrophoreti 132. Oetzel, C and Clasen, R, Preparation of zirconia dental crowns via elec- of nickel, iron and aluminum nanoparticles on carbon fibers. J. Solid State trophoretic deposition. J. Mater. Sci., 2006, 41, 8130-8137 Electrochem. 2006. 10. 1003-10 133. Van der Biest, OO, Joos, E, Vleugels, J and Baufeld, B, Electrophoretic 154. Lee, G.J., Pyun, S.L. and Rhee, C K, A study on electrophoretic deposition deposition of zirconia layers for thermal barrier coatings. J. Mater. Sci., of Ni nanoparticles on pitted Ni alloy 600 with surface fractality. J. Colloid 2006,41,8086-809 Interface Sci,2007,308,413-420 134. Mahajan, S. V, Kavich, D. W, Redigolo, M. L and Dickerson, J.H., 155. Zhang, G D, Chen, X, Zhao, J.K., Chai, Y C, Zhuang, W.C. and Wang, L Structural properties of electrophoretically deposited europium oxide Y, Electrophoretic deposition of silver nanoparticles in lamellar lyotropic nanocrystalline thin films. J. Mater Sci., 2006, 41, 8160-8165 quid crystal. Mater. Lett., 2006, 60, 2889-2892 atit , g T, Ofir, A Tirosh, S. Grinis, L and Zaban, A, Influence of the 156. Kurinec, S.K., Okeke, N, Gupta, S K, Zhang, H and Xiao, T D, Synthe- diffusion and lifetime in porous TiOz layers. Appl. Phys. Lett., sis and electrophoretic deposition of magnetic nickel ferrite nanoparticles. 2006,88[Art.No.182110l J. Mater sci,2006,41,8181-8185. 136. Ofir. A. Dittrich, T. Tirosh S. Grinis L. and zaban. A 157. Zeiner, J. and Clasen, R. Fabrication of microstructures by means of elec- tering temperature, pressing, and conformal coatings on diffusion phoretic deposition(EPD). Electrophoretic Deposition: Fundamentals electrophoretically deposited porous TiO2.J. Ap 006.100 and Applications Il. Key Eng Mater, 2006. 314 57-62. [Art.No.074317] 158. Tomasi, R, Sireude, D. Marchand. R. Scudeller, Y and Guillemet, P. 137. Moskalewicz, T, Czyrska-Filemonowicz, A. and Boccaccini, A.R. Preparation of a thermal insulating material using electrophoretic deposi Microstructure of nanocrystalline TiO films produced by electrophoretic on of silica particles. Mater. Sci. Eng. B-Solid State Mater. Adv. Technol deposition on Ti-6Al-7Nb alloy. Surf. Coat. Technol., 2007, 201 2007.137.225-231 7467-7471 159. Kim, G.-S.. Seo, H.-K.. Godble, V P. Kim. Y.-S O-B and Shin 138. Tang, F Q, Uchikoshi, T, Wawa, K and Sakka, Y, Effect of polyethylen H.S. Electrophoretic deposition of titanate nanotubes from commercial imine on the dispersion and electrophoretic deposition of nano-sized titania titania nanoparticles: application todye-sensitized solarcells. Electrochem. aqueous suspensions. J. Eur. Ceram. Soc., 2006, 26, 1555-1560. Commun,2006,8,961-966 139. Lin, C. K, Yang, T.J., Feng, Y C, Tsung. T. T and Sue, C. Y, Charac- 160. Wang, N, Lin, H, Li, J.B., Yang, X.Z. and Chi, B, Electrophoretic terization of elecrophoretically deposited nanocrystalline titanium dioxide deposition and optical property of titania nanotubes films. Thin Solid Films. films. Surf. Coat. TechnoL., 2006, 200, 3184-3189 2006,496,6496521366 I. Corni et al. / Journal of the European Ceramic Society 28 (2008) 1353–1367 118. Sora, I. N., Pelosato, R., Simone, A., Montanaro, L., Maglia, F. and Chiodelli, G., Characterization of LSGM films obtained by electrophoretic deposition (EPD). Solid State Ionics, 2006, 177, 1985–1989. 119. Matsuda, M., Hosomi, T., Murata, K., Fukui, T. and Miyake, M., Fabrica￾tion of bilayered YSZ/SDC electrolyte film by electrophoretic deposition for reduced-temperature operating anode-supported SOFC. J. Power Sources, 2007, 165, 102–107. 120. Sarkar, P., Yamarte, L., Rho, H. S. and Johanson, L., Anode-supported tubular micro-solid oxide fuel cell. Int. J. Appl. Ceram. Technol., 2007, 4, 103–108. 121. Xu, Z. G., Rajaram, G., Sankar, J. and Pai, D., Electrophoretic deposition of YSZ electrolyte coatings for solid oxide fuel cells. Surf. Coat. Technol., 2006, 201, 4484–4488. 122. Smeacetto, F., Salvo, M., Ferraris, M., Cho, J. and Boccaccini, A. R., Glass–ceramic seal to join Crofer 22 APU alloy to YSZ ceramic in planar SOFCs. J. Eur. Ceram. Soc., 2008, 28, 61–68. 123. Zhitomirsky, I. and Petric, A., The electrodeposition of ceramic and organoceramic films for fuel cells. JOM: J. Miner. Met. Mater. Soc., 2001, 53(9), 48–50. 124. Wu, Y. J., Li, J., Tanaka, H. and Kuwabara, M., Preparation of nano-structured BaTiO3 thin film by electrophoretic deposition and its characterization. J. Eur. Ceram. Soc., 2005, 25, 2041–2044. 125. Zhao, J., Wang, X. and Li, L., Electrophoretic deposition of BaTiO3 films from aqueous suspensions. Mater. Chem. Phys., 2006, 99, 350–353. 126. Dogan, A., Gunkaya, G., Suvaci, E. and Niederberger, M., Electrophoretic deposition of nano-sized BaTiO3. J. Mater. Sci., 2006, 41, 8196– 8201. 127. Dogan, A., Gunkaya, G., Suvaci, E. and Niederberger, M., Electrophoretic deposition of nanocrystalline BaTiO3 in ethanol medium. Electrophoretic Deposition: Fundamentals and Applications II.Key Eng. Mater., 2006, 314, 133–139. 128. Tang, F. Q., Sakka, Y. and Uchikoshi, T., Electrophoretic deposition of aqueous nano-sized zinc oxide suspensions on a zinc electrode. Mater. Res. Bull., 2003, 38, 207–212. 129. Zhang, H. M., Cui, Y., Men, Y. G. and Liu, X. S., Strong ultraviolet emis￾sion from zinc oxide thin films prepared by electrophoretic deposition. J. Lumin., 2006, 121, 601–605. 130. Lee, J.-H., Leu, I.-C., Chung, Y.-W. and Hon, M.-H., Fabrication of ordered ZnO hierarchical structures controlled via surface charge in the electrophoretic deposition process.Nanotechnology, 2006, 17, 4445–4450. 131. Pfrengle, A., von Both, H., Knitter, R. and Hausselt, J., Electrophoretic deposition and sintering of zirconia layers on microstructured steel sub￾strates. J. Eur. Ceram. Soc., 2006, 26, 2633–2638. 132. Oetzel, C. and Clasen, R., Preparation of zirconia dental crowns via elec￾trophoretic deposition. J. Mater. Sci., 2006, 41, 8130–8137. 133. Van der Biest, O. O., Joos, E., Vleugels, J. and Baufeld, B., Electrophoretic deposition of zirconia layers for thermal barrier coatings. J. Mater. Sci., 2006, 41, 8086–8092. 134. Mahajan, S. V., Kavich, D. W., Redigolo, M. L. and Dickerson, J. H., Structural properties of electrophoretically deposited europium oxide nanocrystalline thin films. J. Mater. Sci., 2006, 41, 8160–8165. 135. Dittrich, T., Ofir, A., Tirosh, S., Grinis, L. and Zaban, A., Influence of the porosity on diffusion and lifetime in porous TiO2 layers. Appl. Phys. Lett., 2006, 88 [Art. No. 182110]. 136. Ofir, A., Dittrich, T., Tirosh, S., Grinis, L. and Zaban, A., Influence of sin￾tering temperature, pressing, and conformal coatings on electron diffusion in electrophoretically deposited porous TiO2. J. Appl. Phys., 2006, 100 [Art. No. 074317]. 137. Moskalewicz, T., Czyrska-Filemonowicz, A. and Boccaccini, A. R., Microstructure of nanocrystalline TiO2 films produced by electrophoretic deposition on Ti–6Al–7Nb alloy. Surf. Coat. Technol., 2007, 201, 7467–7471. 138. Tang, F. Q., Uchikoshi, T., Wawa, K. and Sakka, Y., Effect of polyethylen￾imine on the dispersion and electrophoretic deposition of nano-sized titania aqueous suspensions. J. Eur. Ceram. Soc., 2006, 26, 1555–1560. 139. Lin, C. K., Yang, T. J., Feng, Y. C., Tsung, T. T. and Sue, C. Y., Charac￾terization of elecrophoretically deposited nanocrystalline titanium dioxide films. Surf. Coat. Technol., 2006, 200, 3184–3189. 140. Manr´ıquez, J. and God´ınez, L. A., Tuning the structural, electrical and optical properties of Ti(III)-doped nanocrystalline TiO2 films by elec￾trophoretic deposition time. Thin Solid Films, 2007, 515, 3402–3413. 141. Valatka, E. and Kulesius, Z., TiO2-mediated photoelectrochemical decol￾oration of methylene blue in the presence of peroxodisulfate. J. Appl. Electrochem., 2007, 37, 415–420. 142. Xiao, X. F. and Liu, R. F., Effect of suspension stability on electrophoretic deposition of hydroxyapatite coatings. Mater. Lett., 2006, 60, 2627– 2632. 143. Meng, X. W., Kwon, T.-Y., Yang, Y. Z., Ong, J. L. and Kim, K.-H., Effects of applied voltages on hydroxyapatite coating of titanium by electrophoretic deposition. J. Biomed. Mater. Res. Part B-Appl. Biomater., 2006, 78B, 373–377. 144. Monkawa, A., Ikoma, T., Yunoki, S., Ohta, K. and Tanaka, J., Elec￾trophoretic deposition of hydroxyapatite nanocrystal. Bioceramics 18, PTS 1 and 2. Key Eng. Mater., 2006, 309–311, 643–646 [Part 1/2]. 145. Monkawa, A., Ikoma, T., Yunoki, S., Yoshioka, T., Tanaka, J., Chakarov, D. et al., Fabrication of hydroxyapatite ultra-thin layer on gold surface and its application for quartz crystal microbalance technique. Biomaterials, 2006, 27, 5748–5754. 146. Wang, Z. C., Huang, L. M., Tang, Y., Ni, Y. J. and Lin, C. J., Preparation of Co-YSZ/HAp nano-composite coating on Ti substrate by electrochemical method. Acta Physico-Chimica Sinica, 2006, 22, 590–595. 147. Wildhack, S. and Aldinger, F., Electrophoretic deposition of nanocrys￾talline SiC ceramics. Electrophoretic Deposition: Fundamentals and Applications II. Key Eng. Mater., 2006, 314, 33–38. 148. Oshita, T., Sawaki, Y. and Kishimoto, A., Grinding performance of pel￾let prepared using nanosize ceria particles. J. Alloys Compd., 2006, 408, 1118–1122. 149. Wang, Y. and Cao, G. Z., Li+-intercalation electrochemical/electrochromic properties of vanadium pentoxide films by sol electrophoretic deposition. Electrochim. Acta, 2006, 51, 4865–4872. 150. Jang, J. H., Kato, A., Machida, K. and Naoi, K., Supercapacitor perfor￾mance of hydrous ruthenium oxide electrodes prepared by electrophoretic deposition. J. Electrochem. Soc., 2006, 153, A321–A328. 151. Jang, J. H., Machida, K., Kim, Y. and Naoi, K., Electrophoretic deposition (EPD) of hydrous ruthenium oxides with PTFE and their supercapacitor performances. Electrochim. Acta, 2006, 52, 1733–1741. 152. Bhave, T. M., Balasubramanian, C., Nagar, H., Kulkarni, S., Pasricha, R., Bakare, P. P. et al., Oriented growth of nanocrystalline gamma fer￾ric oxide in electrophoretically deposited films. Hyperfine Interact., 2005, 160, 199–209. 153. Luo, K., Shi, N. L., Cong, H. T. and Sun, C., Electrophoretic deposition of nickel, iron and aluminum nanoparticles on carbon fibers. J. Solid State Electrochem., 2006, 10, 1003–1007. 154. Lee, G. J., Pyun, S. I. and Rhee, C. K., A study on electrophoretic deposition of Ni nanoparticles on pitted Ni alloy 600 with surface fractality. J. Colloid Interface Sci., 2007, 308, 413–420. 155. Zhang, G. D., Chen, X., Zhao, J. K., Chai, Y. C., Zhuang, W. C. and Wang, L. Y., Electrophoretic deposition of silver nanoparticles in lamellar lyotropic liquid crystal. Mater. Lett., 2006, 60, 2889–2892. 156. Kurinec, S. K., Okeke, N., Gupta, S. K., Zhang, H. and Xiao, T. D., Synthe￾sis and electrophoretic deposition of magnetic nickel ferrite nanoparticles. J. Mater. Sci., 2006, 41, 8181–8185. 157. Zeiner, J. and Clasen, R., Fabrication of microstructures by means of elec￾trophoretic deposition (EPD). Electrophoretic Deposition: Fundamentals and Applications II. Key Eng. Mater., 2006, 314, 57–62. 158. Tomasi, R., Sireude, D., Marchand, R., Scudeller, Y. and Guillemet, P., Preparation of a thermal insulating material using electrophoretic deposi￾tion of silica particles. Mater. Sci. Eng. B-Solid State Mater. Adv. Technol., 2007, 137, 225–231. 159. Kim, G.-S., Seo, H.-K., Godble, V. P., Kim, Y.-S., Yang, O.-B. and Shin, H.-S., Electrophoretic deposition of titanate nanotubes from commercial titania nanoparticles: application to dye-sensitized solar cells.Electrochem. Commun., 2006, 8, 961–966. 160. Wang, N., Lin, H., Li, J. B., Yang, X. Z. and Chi, B., Electrophoretic deposition and optical property of titania nanotubes films. Thin Solid Films, 2006, 496, 649–652
<<向上翻页向下翻页>>
©2008-现在 cucdc.com 高等教育资讯网 版权所有