[1]
M. Musiani: Electrochim. Acta Vol. 45 (2000), p.3397.
Google Scholar
[2]
G. Maurin, A. Lavant: J. Appl. Electrochem. Vol. 25 (1995), p.1113.
Google Scholar
[3]
E.C. Kedward, B. Kiernam: Metal Finish. Vol. 13 (1967), p.116.
Google Scholar
[4]
H. Hubner, O. Ostermann: Galvanotechnik Vol. 67 (1976), p.452.
Google Scholar
[5]
F.K. Sautter: J. Electrochem. Soc. Vol. 110 (1963), p.557.
Google Scholar
[6]
M. Verelst, J.P. Bonino, A. Rousset: Mater. Sci. Eng. Vol. A135 (1991), p.51.
Google Scholar
[7]
E.S. Chen, G.R. Lakshinarayanan, F.K. Sautter: Metall. Trans. Vol. 2 (1971), p.931.
Google Scholar
[8]
J.P. Celis, J.R. Roos: J. Electrochem. Soc. Vol. 124 (1977), p.1508.
Google Scholar
[9]
C. White, J. Foster: Trans. Inst. Met. Finish. Vol. 59 (1981), p.8.
Google Scholar
[10]
C.C. Lee, C.C. Wan: J. Electrochem. Soc. Vol. 135 (1988), p. (1930).
Google Scholar
[11]
T.W. Tomaszewski, L.C. Tomaszewski, H. Brown: Plating Vol. 56 (1969), p.1234.
Google Scholar
[12]
C. Buelens, J.P. Celis, J.R. Roos: Trans. Inst. Met. Finish. Vol. 63 (1985), p.6.
Google Scholar
[13]
M. Thoma: Plating Surf. Finish. Vol. 71 (1984), p.51.
Google Scholar
[14]
C. Buelens, J.P. Celis, J.R. Roos: J. Appl. Electrochem. Soc. Vol. 13 (1983), p.541.
Google Scholar
[15]
A. Serek, A. Budniok: Curr. Appl. Phys. Vol. 2 (3) (2002), p.193.
Google Scholar
[16]
T.W. Tomaszewski: Trans. Inst. Met. Finish. Vol. 54 (1976), p.45.
Google Scholar
[17]
R.S. Saifullin, R.G. Khalilova: J. Appl. Chem. USRR Vol. 43 (1970), p.6.
Google Scholar
[18]
R.S. Saifullin, R.E. Fomina, A.R. Saifullin, G.G. Sadreeva: Galvanotechnika i obrabotka povierchnosti Vol. 3 (1) (1994), p.8.
Google Scholar
[19]
R.S. Saifullin: Kombinirovannyje electrochimičeskije pokrytija i materiały, Chimija, Moskva, (1972).
Google Scholar
[20]
R. Bazzard, P.J. Boden: Trans. Inst. Metal Finish. Vol. 50 (2) (1972), p.63.
Google Scholar
[21]
A. Budniok, E. Łągiewka: Problemy elektrochemii w inżynierii materiałowej, Wydawnictwo Uniwersytetu Śląskiego, 2009, Katowice.
Google Scholar
[22]
N. Guglielmi: J. Electrochem. Soc. Vol. 119 (8) (1972), p.1009.
Google Scholar
[23]
P. Berçot, E. Peña-Muñoz, J. Pagetti: Surf. Coat. Technol. Vol. 157 (2002), p.282.
Google Scholar
[24]
B. Łosiewicz: An Adaptation of the Guglielmi's Model for Electrolytic Obtaining of the Ni-P+TiO2 Composite Coatings, Proc. of the International Conference Modern Electroplating Processes – Operating of Electroplating Plants in Terms of Polish and EU Regulations (2004).
Google Scholar
[25]
A. Hovestad, L.J.J. Janssen: J. Appl. Electrochem. Vol. 25 (1995), p.519.
Google Scholar
[26]
B. Łosiewicz, A. Budniok: Effect of Hydrodynamic Conditions on the Obtaining Process of the Ni-P-TiO2 Dispersed Coatings, Fizyka i Chemia Metali, t. 1, nr 16, 2000, s. 42-55, Wydawnictwo Uniwersytetu Śląskiego, Katowice.
Google Scholar
[27]
B. Łosiewicz, Dispersed Ni-P+Titanium Oxides Electrode Materials for Hydrogen Evolution, PhD Thesis, University of Silesia, Poland, (2002).
Google Scholar
[28]
J.P. Celis, J.R. Roos, C. Buelens: J. Electrochem. Soc. Vol. 134 (1987), p.1402.
Google Scholar
[29]
J.P. Celis, J.R. Roos, C. Buelens, J. Fransaer: Trans. Inst. Met. Finish Vol. 69 (1991), p.133.
Google Scholar
[30]
A.M.J. Kariapper, J. Foster: Trans. Inst. Metal Finish. Vol. 52 (1974), p.87.
Google Scholar
[31]
J.R. Roos, J.P. Celis, J. Fransaer, C. Buelens: J. Met. Vol. 42 (11) (1990), p.60.
Google Scholar
[32]
J.R. Roos, J.P. Celis: Metalloberfläche Vol. 36 (1982), p.557.
Google Scholar
[33]
C. Buelens, J. Fransaer, J.P. Celis, J.R. Roos: Galvanotechnik Vol. 86 (1995), p.746.
Google Scholar
[34]
J.R. Roos, J.P. Cellis, J.A. Helsen: Trans. IMF Vol. 55 (1977), p.113.
Google Scholar
[35]
J.L. Valdes, H.Y. Cheh: J. Electrochem. Soc. Vol. 134 (4) (1987), p. 223C.
Google Scholar
[36]
J. Fransaer, J.P. Celis, J.R. Ross, J. Electrochem. Soc. Vol. 139 (2) (1992), p.413.
Google Scholar
[37]
G. Maurin, A. Lavanant: J. Appl. Electrochem. Vol. 25 (1995), p.1113.
Google Scholar
[38]
C.T.J. Low, R.G.A. Wills, F.C. Walsh: Surf. Coat. Technol. Vol. 201 (2006), p.371.
Google Scholar