Biomedical Engineering Reference
In-Depth Information
26. S. Forsberg, L. Wagberg (eds). Production of Particles or Fibres having a Coating of
Polyelectrolytes Interacting with Each Other and Paper or Nonwoven Products with
Improved Opacity Therefrom . 2000; SCA Hygiene Products AB: Sweden, p. 19 pp.
27. M. Eriksson, S.M. Notley, L. Wagberg, The influence on paper strength properties
when building multilayers on weak polyelectrolytes onto wood fibres, J. Colloid
Interface Sci. 292 (2005) 38.
28. M. Eriksson, G. Pettersson, L. Wagberg, Application of polymeric multilayers of
starch onto wood fibres to enhance strength properties onto fibres, Nord. Pulp Pap
Res. J. 20 (2005) 270.
29. R. Lingstrom, L. Wagberg, P.T. Larsson, Formation of polyelectrolyte multilayers
on fibres: influence on wettability and fibre/fibre interaction, J. Colloid Interface
Sci. 296 (2006) 396.
30. Z. Zheng, J. McDonald, R. Khillan, et al ., J. of Nanoscience and Nanotechnology 6
(2006) 1.
31. L. Wagberg, I. Nygren, The use of stagnation point adsorption reflectometry to
study molecular interactions relevant to papermaking chemistry, Colloids Surf . 159
(1999) 3.
32. J.C. Dijt, M.A.C. Stuart, G.J. Fleer, Advances in Colloid and Interface Science 50
(1994) 79.
33. F. H o ok, B. Kasemo, C. Fant, K. Scott, H. Elwing, Anal. Chem 73 (2001) 5796.
34. J.B. Schlenoff, S.T. Dubas, Factors controlling the growth of polyelectrolyte multi-
layers, Macromolecules 32 (1999) 8153.
35. R. Lingstrom, L. Wagberg, Polyelectrolyte multilayers on wood fibres: Influence
of molecular weight on layer properties and mechanical properties of papers from
treated fibres, J. Colloid Interface Sci. 328 (2008) 233.
36. I. Wistrand,
R. Lingstrom,
L. Wagberg,
Preparation of electrically conducting
cellulose
fibres
utilizing
polyelectrolyte
multilayers
of
poly(3,4-ethylenedioxy-
thiophene):poly(styrene
sulphonate)
and
poly(allyl
amine),
European
Polymer
Journal 43 (2007) 4075.
37. M. Gimaker, A. Horwath, L. Wagberg, Influence of polymeric additives on short-
time creeo of paper, Nord. Pulp Pap Res. J. 22 (2007) 217.
38. A.E. Horvath, T. Lindstr om, J. Laine, On the indirect polyelectrolyte titration of
cellulosic fibres. conditions for charge stoichiometry and comparison with ESCA,
Langmuir 22 (2006) 824.
39. G. Soderberg, T. Lindstr om, Nord. Pulp Pap Res. J. 1 (1986) 26.
40. A.E. Horvath, in Fibre- and Polymer Technology . 2003, Royal Institute of Technol-
ogy: Stockholm. p. 89.
41. R. Lingstrom, S.M. Notley, L. Wagberg, Wettability changes in the formation of
polymeric multilayers on cellulose fibre and their influence on wet adhesion, J. Col-
loid Interface Sci. 314 (2007) 1.
42. J.H. Klungness, Measuring the wettwetting angle and perimeter of single wood fiber:
A modified method, Tappi J 64 (1981) 65.
43. K.T. Hodgson, J.C. Berg, Dynamic wettability properties of single wood fibres and
their relationship to absorbancy, Wood Fiber Sci. 20 (1988) 3.
44. J.J. Kreuger, K.T. Hodgson, Single-fiber wettability of highly sized pulp fibers,
Tappi J 77 (1994) 83.
Search WWH ::




Custom Search