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Martti Toivakka
Martti Toivakka
Professor of Paper Coating and Converting, Abo Akademi University
Verified email at abo.fi - Homepage
Title
Cited by
Cited by
Year
Comparison of nano-and microfibrillated cellulose films
V Kumar, R Bollström, A Yang, Q Chen, G Chen, P Salminen, D Bousfield, ...
Cellulose 21, 3443-3456, 2014
2242014
IR-sintering of ink-jet printed metal-nanoparticles on paper
D Tobjörk, H Aarnio, P Pulkkinen, R Bollström, A Määttänen, P Ihalainen, ...
Thin solid films 520 (7), 2949-2955, 2012
2012012
A multilayer coated fiber-based substrate suitable for printed functionality
R Bollström, A Määttänen, D Tobjörk, P Ihalainen, N Kaihovirta, ...
Organic Electronics 10 (5), 1020-1023, 2009
1732009
Light‐emitting paper
A Asadpoordarvish, A Sandström, C Larsen, R Bollström, M Toivakka, ...
Advanced Functional Materials 25 (21), 3238-3245, 2015
1612015
Roll-to-roll processed cellulose nanofiber coatings
V Kumar, A Elfving, H Koivula, D Bousfield, M Toivakka
Industrial & Engineering Chemistry Research 55 (12), 3603-3613, 2016
1462016
Development of superhydrophobic coating on paperboard surface using the Liquid Flame Spray
H Teisala, M Tuominen, M Aromaa, JM Mäkelä, M Stepien, JJ Saarinen, ...
Surface and Coatings Technology 205 (2), 436-445, 2010
1452010
Nanostructures increase water droplet adhesion on hierarchically rough superhydrophobic surfaces
H Teisala, M Tuominen, M Aromaa, M Stepien, JM Mäkelä, ...
Langmuir 28 (6), 3138-3145, 2012
1342012
Continuous processing of nanocellulose and polylactic acid into multilayer barrier coatings
R Koppolu, J Lahti, T Abitbol, A Swerin, J Kuusipalo, M Toivakka
ACS applied materials & interfaces 11 (12), 11920-11927, 2019
1332019
Rheology of cellulose nanofibers suspensions: boundary driven flow
B Nazari, V Kumar, DW Bousfield, M Toivakka
Journal of Rheology 60 (6), 1151-1159, 2016
1192016
Paper-based microfluidics: fabrication technique and dynamics of capillary-driven surface flow
J Songok, M Tuominen, H Teisala, J Haapanen, J Mäkelä, J Kuusipalo, ...
ACS applied materials & interfaces 6 (22), 20060-20066, 2014
1192014
Cellulose nanofibril/carbon nanotube composite foam-stabilized paraffin phase change material for thermal energy storage and conversion
Z Shen, S Kwon, HL Lee, M Toivakka, K Oh
Carbohydrate Polymers 273, 118585, 2021
752021
Nanoparticle deposition from liquid flame spray onto moving roll-to-roll paperboard material
JM Mäkelä, M Aromaa, H Teisala, M Tuominen, M Stepien, JJ Saarinen, ...
Aerosol Science and Technology 45 (7), 827-837, 2011
732011
Controlling capillary-driven surface flow on a paper-based microfluidic channel
J Songok, M Toivakka
Microfluidics and Nanofluidics 20, 1-9, 2016
722016
Numerical investigation of droplet impact spreading in spray coating of paper
M Toivakka
Spring advanced coating fundamentals symposium, 2003
692003
Wetting and print quality study of an inkjet-printed poly (3-hexylthiophene) on pigment coated papers
A Määttänen, P Ihalainen, R Bollström, M Toivakka, J Peltonen
Colloids and Surfaces A: Physicochemical and Engineering Aspects 367 (1-3 …, 2010
682010
Transparent nanocellulose-pigment composite films
C Honorato, V Kumar, J Liu, H Koivula, C Xu, M Toivakka
Journal of materials science 50, 7343-7352, 2015
672015
Visualisation of the distribution of offset ink components printed onto coated paper
H Koivula, JS Preston, PJ Heard, M Toivakka
Colloids and Surfaces A: Physicochemical and Engineering Aspects 317 (1-3 …, 2008
662008
Adjustable wettability of paperboard by liquid flame spray nanoparticle deposition
M Stepien, JJ Saarinen, H Teisala, M Tuominen, M Aromaa, J Kuusipalo, ...
Applied Surface Science 257 (6), 1911-1917, 2011
652011
Enhancing capillary-driven flow for paper-based microfluidic channels
J Songok, M Toivakka
ACS Applied Materials & Interfaces 8 (44), 30523-30530, 2016
622016
Enhanced thermal energy storage performance of salt hydrate phase change material: effect of cellulose nanofibril and graphene nanoplatelet
Z Shen, S Kwon, HL Lee, M Toivakka, K Oh
Solar Energy Materials and Solar Cells 225, 111028, 2021
572021
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