212
6 Nanocrystalline Deposits
45. Pantleon K, Somers MAJ (2006) J Appl Phys 100:114319(1–7).
46. Tao S, Li DY (2006) Nanotechnol 17:65–78
47. Pantleon K, Somers MAJ (2006) Scripta Mater 55:283–286
48. Han Z, Lu L, Lu K (2006) Tribol Lett 21:47–52
49. Shen CJ, Zhu ZW, Zhu D (2017) Mater Sci Eng A 704:238–245
50. Seakr R (2017) Trans Nonferrous Met Soc China 27:1423–1430
51. Lu L, Tao NR, Wang LB, Ding BZ, Lu K (2001) J Appl Phys 89:6408–6414
52. Jiang Y, Hu J, Jiang Z, Lian J, Wen C (2018) Mater Sci Eng A 712:341–349
53. Lu L, Li SX, Lu K (2001) Scripta Mater 45:1163–1169
54. Hughes GD, Smith SD, Pande CS, Johnson HR, Armstrong RW (1986) Scripta Metall 20:93–
97
55. El-Sherik AM, Erb U, Palumbo G, Aust KT (1992) Scripta Metall 27:1185–1188
56. Aus MJ, Szpunar B, EI-Sherik AM, Erb U, Palumbo G, Aust KT (1992) Scripta Metall
27:1639–1643
57. Aus MJ, Szpunar B, Erb U, El-Sherik AM, Palumbo G, Aust KT (1994) J Appl Phys 75:3632–
3634
58. Cziráki Á, Tonkovics Z, Ger˝ ocs I, Fogarassy B, Groma I, Tóth-Kádár E, Tarnóczi T, Bakonyi
I (1994) Mater Sci Eng A 179–180:531–535
59. Tóth-Kádár E, Bakonyi I, Pogány L, Cziráki Á (1996) Surf Coat Technol 88:57–65
60. Bakonyi I, Tóth-Kádár E, Pogány L, Cziráki Á, Ger˝ ocs I, Varga-Josepovits K, Arnold B,
Wetzig K (1996) Surf Coat Technol 78:124–136
61. El-Sherik AM, Erb U, Page J (1996) Surf Coat Technol 88:70–78
62. Natter H, Schmelzer M, Hempelmann R (1988) J Mater Res 13:1186–1197
63. Ebrahimi F, Bourne GR, Kelly MS, Matthews TE (1999) Nanostruct Mater 11:343–350
64. El-Sherik AM, Erb U (1995) J. Mater Sci 30:5743–5749
65. Shriram S, Mohan S, Renganathan NG, Venkatachalam R (2000) Trans IMF 78:194–197
66. Ebrahimi F, Ahmed Z (2003) J Appl Electrochem 33:733–739
67. Ebrahimi F, Ahmed Z (2003) Mater Charact 49:373–379
68. Qu NS, Zhu D, Chan KC, Lei WN (2003) Surf Coat Technol 168:123–128
69. Zhang XF, Fujita T, Pan D, Yu JS, Sakurai T, Chen MW (2010) Mater Sci Eng A 527:2297–
2304
70. Savall C, Godon A, Creus J, Feaugas X (2012) Surf Coat Technol 206:4394–4402
71. Ibáñez A, Escudero-Cid R, Ocón P, Fatás E (2012) Surf Coat Technol 212:94–100
72. Matsui I, Uesugi T, Takigawa Y, Higashi K (2013) Acta Mater 61:3360–3369
73. Schüler K, Philippi B, Weinmann M, Marx VM, Vehoff H (2013) Acta Mater 61:3945–3955
74. Gu CD, You YH, Yu YL, Qu SX, Tu JP (2011) Surf Coat Technol 205:4928–4933
75. Danilov FI, Protsenko VS, Kityk AA, Shaiderov DA, Vasil’eva EA, Pramod Kumar U,
Kennady CJ (2017) Prot Met Phys Chem S 53:1131–1138
76. Abraham M, Holdway P, Thuvander M, Cerezo A, Smith GDW (2002) Surf Eng 18:151–156
77. Lei WN, Zhu D, Qu NS (2002) Trans IMF 80:205–209
78. Mishra R, Balasubramaniam R (2004) Corros Sci 46:3019–3029
79. El-Sherik AM, Shirokoff J, Erb U (2005) J Alloy Compd 389:140–143
80. Moti E, Shariat MH, Bahrololoom ME (2008) J Appl Electrochem 38:605–612
81. Kang JX, Zhao WZ, Zhang GF (2009) Surf Coat Technol 203:1815–1818
82. Rashidi AM, Amadeh A (2009) Surf Coat Technol 204:353–358
83. Rashidi AM, Amadeh A (2010) J Mater Sci Technol 26:82–86
84. Qin LY, Lian JS, Jiang Q (2010) Trans Nonferrous Met Soc China 20:82–89
85. Hassan Zadeh Shirazi SM, Bahrololoom ME, Shariat MH (2016) Surf Eng Appl Electrochem
52:434–442
86. Daugherty RE, Zumbach MM, Golden TD (2017) J Appl Electrochem 47:467–477
87. Dalla Torre F, Van Swygenhoven H, Victoria M (2002) Acta Mater 50:3957–3970
88. Hibbard GD, McCrea JL, Palumbo G, Aust KT, Erb U (2002) Scripta Mater 47:83–87
89. Wang YM, Cheng S, Wei QM, Ma E, Nieh TG, Hamza A (2004) Scripta Mater 51:1023–1028
90. Yin WM, Whang SH, Mirshams RA (2005) Acta Mater 53:383–392
6 Nanocrystalline Deposits
45. Pantleon K, Somers MAJ (2006) J Appl Phys 100:114319(1–7).
46. Tao S, Li DY (2006) Nanotechnol 17:65–78
47. Pantleon K, Somers MAJ (2006) Scripta Mater 55:283–286
48. Han Z, Lu L, Lu K (2006) Tribol Lett 21:47–52
49. Shen CJ, Zhu ZW, Zhu D (2017) Mater Sci Eng A 704:238–245
50. Seakr R (2017) Trans Nonferrous Met Soc China 27:1423–1430
51. Lu L, Tao NR, Wang LB, Ding BZ, Lu K (2001) J Appl Phys 89:6408–6414
52. Jiang Y, Hu J, Jiang Z, Lian J, Wen C (2018) Mater Sci Eng A 712:341–349
53. Lu L, Li SX, Lu K (2001) Scripta Mater 45:1163–1169
54. Hughes GD, Smith SD, Pande CS, Johnson HR, Armstrong RW (1986) Scripta Metall 20:93–
97
55. El-Sherik AM, Erb U, Palumbo G, Aust KT (1992) Scripta Metall 27:1185–1188
56. Aus MJ, Szpunar B, EI-Sherik AM, Erb U, Palumbo G, Aust KT (1992) Scripta Metall
27:1639–1643
57. Aus MJ, Szpunar B, Erb U, El-Sherik AM, Palumbo G, Aust KT (1994) J Appl Phys 75:3632–
3634
58. Cziráki Á, Tonkovics Z, Ger˝ ocs I, Fogarassy B, Groma I, Tóth-Kádár E, Tarnóczi T, Bakonyi
I (1994) Mater Sci Eng A 179–180:531–535
59. Tóth-Kádár E, Bakonyi I, Pogány L, Cziráki Á (1996) Surf Coat Technol 88:57–65
60. Bakonyi I, Tóth-Kádár E, Pogány L, Cziráki Á, Ger˝ ocs I, Varga-Josepovits K, Arnold B,
Wetzig K (1996) Surf Coat Technol 78:124–136
61. El-Sherik AM, Erb U, Page J (1996) Surf Coat Technol 88:70–78
62. Natter H, Schmelzer M, Hempelmann R (1988) J Mater Res 13:1186–1197
63. Ebrahimi F, Bourne GR, Kelly MS, Matthews TE (1999) Nanostruct Mater 11:343–350
64. El-Sherik AM, Erb U (1995) J. Mater Sci 30:5743–5749
65. Shriram S, Mohan S, Renganathan NG, Venkatachalam R (2000) Trans IMF 78:194–197
66. Ebrahimi F, Ahmed Z (2003) J Appl Electrochem 33:733–739
67. Ebrahimi F, Ahmed Z (2003) Mater Charact 49:373–379
68. Qu NS, Zhu D, Chan KC, Lei WN (2003) Surf Coat Technol 168:123–128
69. Zhang XF, Fujita T, Pan D, Yu JS, Sakurai T, Chen MW (2010) Mater Sci Eng A 527:2297–
2304
70. Savall C, Godon A, Creus J, Feaugas X (2012) Surf Coat Technol 206:4394–4402
71. Ibáñez A, Escudero-Cid R, Ocón P, Fatás E (2012) Surf Coat Technol 212:94–100
72. Matsui I, Uesugi T, Takigawa Y, Higashi K (2013) Acta Mater 61:3360–3369
73. Schüler K, Philippi B, Weinmann M, Marx VM, Vehoff H (2013) Acta Mater 61:3945–3955
74. Gu CD, You YH, Yu YL, Qu SX, Tu JP (2011) Surf Coat Technol 205:4928–4933
75. Danilov FI, Protsenko VS, Kityk AA, Shaiderov DA, Vasil’eva EA, Pramod Kumar U,
Kennady CJ (2017) Prot Met Phys Chem S 53:1131–1138
76. Abraham M, Holdway P, Thuvander M, Cerezo A, Smith GDW (2002) Surf Eng 18:151–156
77. Lei WN, Zhu D, Qu NS (2002) Trans IMF 80:205–209
78. Mishra R, Balasubramaniam R (2004) Corros Sci 46:3019–3029
79. El-Sherik AM, Shirokoff J, Erb U (2005) J Alloy Compd 389:140–143
80. Moti E, Shariat MH, Bahrololoom ME (2008) J Appl Electrochem 38:605–612
81. Kang JX, Zhao WZ, Zhang GF (2009) Surf Coat Technol 203:1815–1818
82. Rashidi AM, Amadeh A (2009) Surf Coat Technol 204:353–358
83. Rashidi AM, Amadeh A (2010) J Mater Sci Technol 26:82–86
84. Qin LY, Lian JS, Jiang Q (2010) Trans Nonferrous Met Soc China 20:82–89
85. Hassan Zadeh Shirazi SM, Bahrololoom ME, Shariat MH (2016) Surf Eng Appl Electrochem
52:434–442
86. Daugherty RE, Zumbach MM, Golden TD (2017) J Appl Electrochem 47:467–477
87. Dalla Torre F, Van Swygenhoven H, Victoria M (2002) Acta Mater 50:3957–3970
88. Hibbard GD, McCrea JL, Palumbo G, Aust KT, Erb U (2002) Scripta Mater 47:83–87
89. Wang YM, Cheng S, Wei QM, Ma E, Nieh TG, Hamza A (2004) Scripta Mater 51:1023–1028
90. Yin WM, Whang SH, Mirshams RA (2005) Acta Mater 53:383–392
