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Article

Modification of Surface Hydrophobicity of PLA/PE and ABS/PE Polymer Blends by ICP Etching and CFx Coating

by
Vedrana Lovinčić Milovanović
1,*,
Cédric Guyon
2,
Ivana Grčić
3,
Michael Tatoulian
2 and
Domagoj Vrsaljko
4,*
1
MAXICON Inc., Kružna 22, 10000 Zagreb, Croatia
2
Chimie ParisTech, PSL University, CNRS, Institut de Recherche de Chimie Paris, 75005 Paris, France
3
Faculty of Geotechnical Engineering, University of Zagreb, 42000 Varaždin, Croatia
4
Faculty of Chemical Engineering and Technology, University of Zagreb, 10000 Zagreb, Croatia
*
Authors to whom correspondence should be addressed.
Materials 2020, 13(23), 5578; https://doi.org/10.3390/ma13235578
Submission received: 21 October 2020 / Revised: 27 November 2020 / Accepted: 2 December 2020 / Published: 7 December 2020
(This article belongs to the Special Issue Synthesis, Properties and Applications of Polymer Blends)

Abstract

The flow regime inside the channel of 3D printed microreactors is defined by the surface properties of the channel walls. Polylactide (PLA) and acrylonitrile/butadiene/styrene (ABS) are two polymers that are the most common in additive manufacturing using fused filament fabrication, commonly known as “3D printing”. With the aim of developing new materials for the 3D printing of microreactors whose channel surface hydrophobicity could be modified, PLA and ABS were blended with cheaper and widely used polymers-high-density polyethylene (PE-HD) and low-density polyethylene (PE-LD). Polymer blend surfaces were treated with inductively coupled plasma (ICP) and coated by fluorocarbon-based material (CFx) plasma deposition treatment in order to modify surface hydrophobicity. It has been shown that the modification of surface morphology of PLA polymer blends can be achieved by ICP etching and CFx coating, while this was not possible for ABS polymer blends under the conducted treatment conditions. The treated surface of PLA/PE-HD 90/10 showed a contact angle of 121.6° which is 36° higher than the contact angle measured on the untreated surface. Surfaces that have achieved contact angles higher than 120° have an “island like” surface morphology. Samples with higher “islands” showed higher contact angles, that confirmed that the hydrophobicity also depends on the height of the “islands”. Furthermore, it has been found that etching time significantly impacts the contact angle values and surface morphology of the PLA polymer blends, while the CFx coating time does not have significant impact on the surface properties.
Keywords: acrylonitrile/butadiene/styrene; microreactors; polylactide; 3D printing; surface hydrophobicity acrylonitrile/butadiene/styrene; microreactors; polylactide; 3D printing; surface hydrophobicity

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MDPI and ACS Style

Lovinčić Milovanović, V.; Guyon, C.; Grčić, I.; Tatoulian, M.; Vrsaljko, D. Modification of Surface Hydrophobicity of PLA/PE and ABS/PE Polymer Blends by ICP Etching and CFx Coating. Materials 2020, 13, 5578. https://doi.org/10.3390/ma13235578

AMA Style

Lovinčić Milovanović V, Guyon C, Grčić I, Tatoulian M, Vrsaljko D. Modification of Surface Hydrophobicity of PLA/PE and ABS/PE Polymer Blends by ICP Etching and CFx Coating. Materials. 2020; 13(23):5578. https://doi.org/10.3390/ma13235578

Chicago/Turabian Style

Lovinčić Milovanović, Vedrana, Cédric Guyon, Ivana Grčić, Michael Tatoulian, and Domagoj Vrsaljko. 2020. "Modification of Surface Hydrophobicity of PLA/PE and ABS/PE Polymer Blends by ICP Etching and CFx Coating" Materials 13, no. 23: 5578. https://doi.org/10.3390/ma13235578

APA Style

Lovinčić Milovanović, V., Guyon, C., Grčić, I., Tatoulian, M., & Vrsaljko, D. (2020). Modification of Surface Hydrophobicity of PLA/PE and ABS/PE Polymer Blends by ICP Etching and CFx Coating. Materials, 13(23), 5578. https://doi.org/10.3390/ma13235578

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