Functional Fiber Based Materials for Microsystem Applications
Doktorsavhandling, 2014
Författare
Carl Zandén
Chalmers, Mikroteknologi och nanovetenskap (MC2), Elektronikmaterial och system
Stem cell responses to plasma surface modified electrospun polyurethane scaffolds.
Nanomedicine: Nanotechnology, Biology, and Medicine,;Vol. 10(2014)p. 949-958
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Surface characterisation of oxygen plasma treated electrospun polyurethane fibres and their interaction with red blood cells
European Polymer Journal,;Vol. 48(2012)p. 472-482
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A method to integrate patterned electrospun fibers with microfluidic systems to generate complex microenvironments for cell culture applications
Biomicrofluidics,;Vol. 6(2012)
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A Novel Method for Three-Dimensional Culture of Central Nervous System Neurons.
Tissue engineering. Part C, Methods,;Vol. 20(2014)p. 485-492
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Bioactive 3D cell culture system minimizes cellular stress and maintains the in vivo-like morphological complexity of astroglial cells
GLIA,;Vol. 61(2013)p. 432-440
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Fabrication and Characterization of a Metal Matrix Polymer Fibre Composite for Thermal Interface Material Applications
19th International Workshop on Thermal Investigations of ICs and Systems, THERMINIC 2013; Berlin; Germany; 25 September 2013 through 27 September 2013,;(2013)p. 286-292
Paper i proceeding
A new solder matrix nano polymer composite for thermal management applications
Composites Science and Technology,;Vol. 94(2014)p. 54-61
Artikel i vetenskaplig tidskrift
Styrkeområden
Nanovetenskap och nanoteknik
Livsvetenskaper och teknik (2010-2018)
Materialvetenskap
Ämneskategorier (SSIF 2011)
Annan materialteknik
Elektroteknik och elektronik
Kompositmaterial och -teknik
ISBN
978-91-7597-082-0
Technical report MC2 - Department of Microtechnology and Nanoscience, Chalmers University of Technology
Kollektorn, MC2, Kemivägen 9
Opponent: Prof. Mervi Paulasto-Kröckel, Aalto University School of Electrical Engineering, Finland