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BYTEŠNÍKOVÁ, Z. BIRGUSOVÁ, E. PEKÁRKOVÁ, J. ŠVEC, P. RICHTERA, L.
Original Title
A novel method for modification of poly(lactic acid) filament by graphene oxide for 3D print
Type
conference paper
Language
English
Original Abstract
In this study, we introduce a method for modifying poly(lactic acid) (PLA) filament, which is adjustable to enhance the rheological properties and biocompatibility of printed products or impart specific characteristics by bonding nanoparticles onto the surface of graphene oxide. What distinguishes our method is the post-production modification of PLA filament before the printing process. Graphene oxide, being a unique nanomaterial with diverse applications in science and technology, serves as a platform for modification due to the presence of functional groups on its surface that are accessible for binding modifiers or nanoparticles. The persistence of graphene oxide on the surface of printed items even after 3D printing highlights its potential for further modifications. This presence was verified through scanning electron microscopy and Raman spectroscopy.
Keywords
Graphene oxide; additive manufacturing; PLA; 3D printing
Authors
BYTEŠNÍKOVÁ, Z.; BIRGUSOVÁ, E.; PEKÁRKOVÁ, J.; ŠVEC, P.; RICHTERA, L.
Released
18. 10. 2023
Publisher
TANGER LTD
Location
Slezská Ostrava
ISBN
978-80-8836-515-0
Book
NANOCON Conference Proceedings
Pages from
298
Pages to
302
Pages count
5
URL
https://www.confer.cz/nanocon/2023/4799-a-novel-method-for-modification-of-pla-filament-by-graphene-oxide-for-3d-print
BibTex
@inproceedings{BUT189942, author="Zuzana {Bytešníková} and Eliška {Birgusová} and Jana {Pekárková} and Pavel {Švec} and Lukáš {Richtera}", title="A novel method for modification of poly(lactic acid) filament by graphene oxide for 3D print", booktitle="NANOCON Conference Proceedings", year="2023", pages="298--302", publisher="TANGER LTD", address="Slezská Ostrava", doi="10.37904/nanocon.2023.4799", isbn="978-80-8836-515-0", url="https://www.confer.cz/nanocon/2023/4799-a-novel-method-for-modification-of-pla-filament-by-graphene-oxide-for-3d-print" }