216
6 Nanocrystalline Deposits
218. Mallett JJ, Svedberg EB, Bonevich JE, Shapiro AJ, Egelhoff WF, Moffat TP (2008) J
Electrochem Soc 155:D1–D9
219. McMahon G, Erb U (1989) J Mater Sci Lett 8:865–868
220. McMahon G, Erb U (1989) Microstruct Sci 17:447–457
221. Kobayashi S, Kamata A, Watanabe T (2009) Scr Mater 61:1032–1035
222. Kobayashi S, Kashikura Y (2003) Mater Sci Eng A 358:76–83
223. Jeong DH, Erb U, Aust KT, Palumbo G (2003) Scripta Mater 48:1067–1072
224. Sheikholeslam MA, Enayati MH, Raeissi K (2008) Mater Lett 62:3629–3631
225. Sheikholeslam MA, Raeissi K, Enayati MH (2010) Trans IMF 88:324–329
226. Kosta I, Vallés E, Gómez E, Sarret M, Müller C (2011) Mater Lett 65:2849–2851
227. Mikó A, Hempelmann R, Lakatos-Varsányi M, Kálmán E (2006) Electrochem Solid State
Lett 9:C126–C130
228. Kovalska N, Hansal WEG, Tsyntsaru N, Cesiulis H, Gebert A, Kautek W (2019) Trans IMF
97:89–94
229. Lee KH, Chang D, Kwon SC (2005) Electrochim Acta 50:4538–4543
230. Bekish YN, Poznyak SK, Tsybulskaya LS, Gaevskaya TV (2010) Electrochim Acta 55:2223–
2231
231. Müller T, Grimwood J, Bachmaier A, Pippan R (2018) Metals 8:363(1–13)
232. Przeniosło R, Wagner J, Natter H, Hempelmann R, Wagner W (2001) J Alloy Compd 328:259–
263
233. Hoshino S, Laitinen HA, Hoflund GB (1986) J Electrochem Soc 133:681–685
234. Tsai RY, Wu ST (1990) J Electrochem Soc 137:3057–3060
235. Choi P, da Silva M, Klement U, Al-Kassab T, Kirchheim R (2005) Acta Mater 53:4473–4481
236. da Silva M, Wille C, Klement U, Choi P, Al-Kassab T (2007) Mater Sci Eng A 445–446:31–39
237. Nee CC, Weil R (1985) Surf Technol 25:7–15
6 Nanocrystalline Deposits
218. Mallett JJ, Svedberg EB, Bonevich JE, Shapiro AJ, Egelhoff WF, Moffat TP (2008) J
Electrochem Soc 155:D1–D9
219. McMahon G, Erb U (1989) J Mater Sci Lett 8:865–868
220. McMahon G, Erb U (1989) Microstruct Sci 17:447–457
221. Kobayashi S, Kamata A, Watanabe T (2009) Scr Mater 61:1032–1035
222. Kobayashi S, Kashikura Y (2003) Mater Sci Eng A 358:76–83
223. Jeong DH, Erb U, Aust KT, Palumbo G (2003) Scripta Mater 48:1067–1072
224. Sheikholeslam MA, Enayati MH, Raeissi K (2008) Mater Lett 62:3629–3631
225. Sheikholeslam MA, Raeissi K, Enayati MH (2010) Trans IMF 88:324–329
226. Kosta I, Vallés E, Gómez E, Sarret M, Müller C (2011) Mater Lett 65:2849–2851
227. Mikó A, Hempelmann R, Lakatos-Varsányi M, Kálmán E (2006) Electrochem Solid State
Lett 9:C126–C130
228. Kovalska N, Hansal WEG, Tsyntsaru N, Cesiulis H, Gebert A, Kautek W (2019) Trans IMF
97:89–94
229. Lee KH, Chang D, Kwon SC (2005) Electrochim Acta 50:4538–4543
230. Bekish YN, Poznyak SK, Tsybulskaya LS, Gaevskaya TV (2010) Electrochim Acta 55:2223–
2231
231. Müller T, Grimwood J, Bachmaier A, Pippan R (2018) Metals 8:363(1–13)
232. Przeniosło R, Wagner J, Natter H, Hempelmann R, Wagner W (2001) J Alloy Compd 328:259–
263
233. Hoshino S, Laitinen HA, Hoflund GB (1986) J Electrochem Soc 133:681–685
234. Tsai RY, Wu ST (1990) J Electrochem Soc 137:3057–3060
235. Choi P, da Silva M, Klement U, Al-Kassab T, Kirchheim R (2005) Acta Mater 53:4473–4481
236. da Silva M, Wille C, Klement U, Choi P, Al-Kassab T (2007) Mater Sci Eng A 445–446:31–39
237. Nee CC, Weil R (1985) Surf Technol 25:7–15
