Fractional Factorial Design to Evaluate the Synthesis and Electrochemical Transfer Parameters of h-BN Coatings.

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Title: Fractional Factorial Design to Evaluate the Synthesis and Electrochemical Transfer Parameters of h-BN Coatings.
Authors: Figueroa, Helen1,2 (AUTHOR) cristian.ramirez@usm.cl, Aristizabal, Juliet1,3 (AUTHOR) juliet.aristizabal@usm.cl, Reinoso-Guerra, Elías1,4 (AUTHOR) elias.reinoso.12@sansano.usm.cl, Arce, Bárbara1 (AUTHOR) barbara.arce.lopez@gmail.com, Vargas-Straube, María José1 (AUTHOR) maru.vs@gmail.com, Gentil, Dana1 (AUTHOR) dana.gentil@usm.cl, Ramírez, Cristian2 (AUTHOR), Cordero, José5 (AUTHOR) jocorderf@gmail.com, Barrera, Nelson P.5 (AUTHOR) nbarrera@bio.puc.cl, Parra, Carolina1,4 (AUTHOR) carolina.parra@usm.cl
Source: Nanomaterials (2079-4991). Dec2023, Vol. 13 Issue 23, p2992. 22p.
Subjects: Factorials, Factorial experiment designs, Surface coatings, Boron nitride, Mass media influence, Surface roughness
Abstract: In this study, we present a fractional factorial design approach for exploring the effects and interactions of key synthesis and electrochemical transfer parameters on the roughness and wettability of hexagonal boron nitride (h-BN) coatings, due to their essential role in biofilm formation. The studied parameters for the synthesis process include precursor mass, growth time, and substrate conditioning, whereas for the transfer process, applied voltage and aqueous medium concentration were studied. Through this polynomial model, we confirmed the strong influence of precursor mass and medium concentration parameters on h-BN surface roughness and its resulting antibiofilm properties. [ABSTRACT FROM AUTHOR]
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Database: Engineering Source
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Abstract:In this study, we present a fractional factorial design approach for exploring the effects and interactions of key synthesis and electrochemical transfer parameters on the roughness and wettability of hexagonal boron nitride (h-BN) coatings, due to their essential role in biofilm formation. The studied parameters for the synthesis process include precursor mass, growth time, and substrate conditioning, whereas for the transfer process, applied voltage and aqueous medium concentration were studied. Through this polynomial model, we confirmed the strong influence of precursor mass and medium concentration parameters on h-BN surface roughness and its resulting antibiofilm properties. [ABSTRACT FROM AUTHOR]
ISSN:20794991
DOI:10.3390/nano13232992