Vest, Natalie A.

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9430fd1d-5489-432d-802d-84ff546b716a
  • Vest, Natalie A. (1)
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Author's Bibliography

Flame-Retardant, Antimicrobial, and UV-Protective Lignin-Based Multilayer Nanocoating

Petkovska, Jovana; Mladenović, Nina; Marković, Darka; Radoičić, Marija B.; Vest, Natalie A.; Palen, Bethany; Radetić, Maja M.; Grunlan, Jaime C.; Jordanov, Igor

(2022)

TY  - JOUR
AU  - Petkovska, Jovana
AU  - Mladenović, Nina
AU  - Marković, Darka
AU  - Radoičić, Marija B.
AU  - Vest, Natalie A.
AU  - Palen, Bethany
AU  - Radetić, Maja M.
AU  - Grunlan, Jaime C.
AU  - Jordanov, Igor
PY  - 2022
UR  - https://vinar.vin.bg.ac.rs/handle/123456789/10317
AB  - Creating multifunctional textiles using chemicals from renewable sources is challenging. In an effort to develop a sustainable and efficient multifunctional cotton treatment, a lignin-based multilayer nanocoating comprising magnesium lignosulfonate, chitosan, and monoammonium phosphate (MAP) was deposited using layer-by-layer assembly. A five bilayer coating adds 15.5 wt % to cotton and imparts fire extinguishing behavior and excellent UV and antimicrobial protection to the fabric. Just a two bilayer coating imparts sufficient self-extinguishing behavior to pass the standard vertical flame test. The combined influence of lignin as a char-forming and UV-protective macromolecule, chitosan as a char-forming biopolymer, and MAP acting as an antimicrobial agent (and a blowing agent and an acid source in an intumescent flame retardant system) results in a very powerful multifunctional textile treatment with very few layers of deposition.
T2  - ACS Applied Polymer Materials
T1  - Flame-Retardant, Antimicrobial, and UV-Protective Lignin-Based Multilayer Nanocoating
VL  - 4
IS  - 6
SP  - 4528
EP  - 4537
DO  - 10.1021/acsapm.2c00520
ER  - 
@article{
author = "Petkovska, Jovana and Mladenović, Nina and Marković, Darka and Radoičić, Marija B. and Vest, Natalie A. and Palen, Bethany and Radetić, Maja M. and Grunlan, Jaime C. and Jordanov, Igor",
year = "2022",
abstract = "Creating multifunctional textiles using chemicals from renewable sources is challenging. In an effort to develop a sustainable and efficient multifunctional cotton treatment, a lignin-based multilayer nanocoating comprising magnesium lignosulfonate, chitosan, and monoammonium phosphate (MAP) was deposited using layer-by-layer assembly. A five bilayer coating adds 15.5 wt % to cotton and imparts fire extinguishing behavior and excellent UV and antimicrobial protection to the fabric. Just a two bilayer coating imparts sufficient self-extinguishing behavior to pass the standard vertical flame test. The combined influence of lignin as a char-forming and UV-protective macromolecule, chitosan as a char-forming biopolymer, and MAP acting as an antimicrobial agent (and a blowing agent and an acid source in an intumescent flame retardant system) results in a very powerful multifunctional textile treatment with very few layers of deposition.",
journal = "ACS Applied Polymer Materials",
title = "Flame-Retardant, Antimicrobial, and UV-Protective Lignin-Based Multilayer Nanocoating",
volume = "4",
number = "6",
pages = "4528-4537",
doi = "10.1021/acsapm.2c00520"
}
Petkovska, J., Mladenović, N., Marković, D., Radoičić, M. B., Vest, N. A., Palen, B., Radetić, M. M., Grunlan, J. C.,& Jordanov, I.. (2022). Flame-Retardant, Antimicrobial, and UV-Protective Lignin-Based Multilayer Nanocoating. in ACS Applied Polymer Materials, 4(6), 4528-4537.
https://doi.org/10.1021/acsapm.2c00520
Petkovska J, Mladenović N, Marković D, Radoičić MB, Vest NA, Palen B, Radetić MM, Grunlan JC, Jordanov I. Flame-Retardant, Antimicrobial, and UV-Protective Lignin-Based Multilayer Nanocoating. in ACS Applied Polymer Materials. 2022;4(6):4528-4537.
doi:10.1021/acsapm.2c00520 .
Petkovska, Jovana, Mladenović, Nina, Marković, Darka, Radoičić, Marija B., Vest, Natalie A., Palen, Bethany, Radetić, Maja M., Grunlan, Jaime C., Jordanov, Igor, "Flame-Retardant, Antimicrobial, and UV-Protective Lignin-Based Multilayer Nanocoating" in ACS Applied Polymer Materials, 4, no. 6 (2022):4528-4537,
https://doi.org/10.1021/acsapm.2c00520 . .
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