Lars Wågberg
Lars Wågberg
Professor in Fibre Technology, KTH Royal Institute of Technology
Verified email at
Cited by
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The build-up of polyelectrolyte multilayers of microfibrillated cellulose and cationic polyelectrolytes
L Wågberg, G Decher, M Norgren, T Lindström, M Ankerfors, K Axnäs
Langmuir 24 (3), 784-795, 2008
Transparent and conductive paper from nanocellulose fibers
L Hu, G Zheng, J Yao, N Liu, B Weil, M Eskilsson, E Karabulut, Z Ruan, ...
Energy & Environmental Science 6 (2), 513-518, 2013
Hydrodynamic alignment and assembly of nanofibrils resulting in strong cellulose filaments
KMO Håkansson, AB Fall, F Lundell, S Yu, C Krywka, SV Roth, G Santoro, ...
Nature communications 5 (1), 1-10, 2014
Ultra porous nanocellulose aerogels as separation medium for mixtures of oil/water liquids
NT Cervin, C Aulin, PT Larsson, L Wågberg
Cellulose 19 (2), 401-410, 2012
Aerogels from nanofibrillated cellulose with tunable oleophobicity
C Aulin, J Netrval, L Wågberg, T Lindström
Soft Matter 6 (14), 3298-3305, 2010
Self-assembled three-dimensional and compressible interdigitated thin-film supercapacitors and batteries
G Nyström, A Marais, E Karabulut, L Wågberg, Y Cui, MM Hamedi
Nature communications 6, 7259, 2015
Engineering of fibre surface properties by application of the polyelectrolyte multilayer concept. Part I: Modification of paper strength
L Wågberg, S Forsberg, A Johansson, P Juntti
Journal of Pulp and Paper Science (JPPS) 28 (7), 222-228, 2002
Visco-elastic and adhesive properties of adsorbed polyelectrolyte multilayers determined in situ with QCM-D and AFM measurements
SM Notley, M Eriksson, L Wågberg
Journal of colloid and interface science 292 (1), 29-37, 2005
Nanostructured paper for flexible energy and electronic devices
G Zheng, Y Cui, E Karabulut, L Wågberg, H Zhu, L Hu
MRS bulletin 38 (4), 320-325, 2013
On the nature of joint strength in paper-A review of dry and wet strength resins used in paper manufacturing
T Lindström, L Wågberg, T Larsson
13th fundamental research symposium 1, 457-562, 2005
Model films of cellulose: I. Method development and initial results
S Gunnars, L Wågberg, MAC Stuart
Cellulose 9 (3-4), 239-249, 2002
Nanocellulose aerogels functionalized by rapid layer‐by‐layer assembly for high charge storage and beyond
M Hamedi, E Karabulut, A Marais, A Herland, G Nyström, L Wågberg
Angewandte Chemie 125 (46), 12260-12264, 2013
On the charge stoichiometry upon adsorption of a cationic polyelectrolyte on cellulosic materials
L Wågberg, L Winter, L Ödberg, T Lindström
Colloids and Surfaces 27 (4), 163-173, 1987
Single-paper flexible Li-ion battery cells through a paper-making process based on nano-fibrillated cellulose
S Leijonmarck, A Cornell, G Lindbergh, L Wågberg
Journal of Materials Chemistry A 1 (15), 4671-4677, 2013
The influence on paper strength properties when building multilayers of weak polyelectrolytes onto wood fibres
M Eriksson, SM Notley, L Wågberg
Journal of colloid and interface science 292 (1), 38-45, 2005
Direct measurement of attractive van der Waals' forces between regenerated cellulose surfaces in an aqueous environment
SM Notley, B Pettersson, L Wågberg
Journal of the American Chemical Society 126 (43), 13930-13931, 2004
Silicon-conductive nanopaper for Li-ion batteries
L Hu, N Liu, M Eskilsson, G Zheng, J McDonough, L Wågberg, Y Cui
Nano Energy 2 (1), 138-145, 2013
An organic mixed ion–electron conductor for power electronics
A Malti, J Edberg, H Granberg, ZU Khan, JW Andreasen, X Liu, D Zhao, ...
Advanced science 3 (2), 1500305, 2016
Adsorption and flocculation behavior of cationic polyacrylamide and colloidal silica
D Solberg, L Wågberg
Colloids and Surfaces A: Physicochemical and Engineering Aspects 219 (1-3 …, 2003
Polyelectrolyte complexes for surface modification of wood fibres: II. Influence of complexes on wet and dry strength of paper
L Gärdlund, L Wågberg, R Gernandt
Colloids and Surfaces A: Physicochemical and Engineering Aspects 218 (1-3 …, 2003
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