A study of the barrier properties of polyethylene coated with a nanocellulose/magnetite composite film
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2016
Преузимање 🢃
Аутори
Đorđević, NenadMarinković, Aleksandar D.
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Nikolić, Jasmina B.
Drmanić, Saša Z.
Rančić, Milica
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Brković, Danijela V.
Uskoković, Petar S.
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Чланак у часопису (Објављена верзија)
Метаподаци
Приказ свих података о документуАпстракт
The morphological, thermal and barrier properties of low-density polyethylene/polycaprolactone-modified nanocellulose hybrid materials were investigated in this study. Nanocellulose/magnetite (NC-Fe3O4) nanocomposite and maleic acid functionalized NC/magnetite (NCMA-Fe3O4) nanocomposite were prepared and used as fillers at various concentrations (5, 10 and 15 wt. %) in the polycaprolactone (PCL) layer. PE was coated with a PCL/NC//magnetite layer. The addition of the filler did not unfavorably affect the inherent properties of the polymer, especially its barrier properties. Oxygen permeation measurements showed that the oxygen barrier properties of magnetite enriched PCL film were improved due to the chemical activity of the added material. The highest level of the barrier capacity was observed for PE samples coated with a PCL-based composite with NCMA-Fe3O4 micro/nanofiller, which implies a significant contribution of the surface modification of the nanocellulose with maleic anhydride... residue to the improved barrier properties.
Кључне речи:
polycaprolactone / packaging material / inorganic filler / hybrid materials / compositesИзвор:
Journal of the Serbian Chemical Society, 2016, 81, 5, 589-605Издавач:
- Srpsko hemijsko društvo, Beograd
Финансирање / пројекти:
- Синтеза, развој технологија добијања и примена наноструктурних мултифункционалних материјала дефинисаних својстава (RS-MESTD-Integrated and Interdisciplinary Research (IIR or III)-45019)
- Проучавање синтезе, структуре и активности органских једињења природног и синтетског порекла (RS-MESTD-Basic Research (BR or ON)-172013)
DOI: 10.2298/JSC151217019D
ISSN: 0352-5139
WoS: 000379232800010
Scopus: 2-s2.0-84978086916
Институција/група
Šumarski fakultetTY - JOUR AU - Đorđević, Nenad AU - Marinković, Aleksandar D. AU - Nikolić, Jasmina B. AU - Drmanić, Saša Z. AU - Rančić, Milica AU - Brković, Danijela V. AU - Uskoković, Petar S. PY - 2016 UR - https://omorika.sfb.bg.ac.rs/handle/123456789/728 AB - The morphological, thermal and barrier properties of low-density polyethylene/polycaprolactone-modified nanocellulose hybrid materials were investigated in this study. Nanocellulose/magnetite (NC-Fe3O4) nanocomposite and maleic acid functionalized NC/magnetite (NCMA-Fe3O4) nanocomposite were prepared and used as fillers at various concentrations (5, 10 and 15 wt. %) in the polycaprolactone (PCL) layer. PE was coated with a PCL/NC//magnetite layer. The addition of the filler did not unfavorably affect the inherent properties of the polymer, especially its barrier properties. Oxygen permeation measurements showed that the oxygen barrier properties of magnetite enriched PCL film were improved due to the chemical activity of the added material. The highest level of the barrier capacity was observed for PE samples coated with a PCL-based composite with NCMA-Fe3O4 micro/nanofiller, which implies a significant contribution of the surface modification of the nanocellulose with maleic anhydride residue to the improved barrier properties. PB - Srpsko hemijsko društvo, Beograd T2 - Journal of the Serbian Chemical Society T1 - A study of the barrier properties of polyethylene coated with a nanocellulose/magnetite composite film EP - 605 IS - 5 SP - 589 VL - 81 DO - 10.2298/JSC151217019D UR - conv_1217 ER -
@article{ author = "Đorđević, Nenad and Marinković, Aleksandar D. and Nikolić, Jasmina B. and Drmanić, Saša Z. and Rančić, Milica and Brković, Danijela V. and Uskoković, Petar S.", year = "2016", abstract = "The morphological, thermal and barrier properties of low-density polyethylene/polycaprolactone-modified nanocellulose hybrid materials were investigated in this study. Nanocellulose/magnetite (NC-Fe3O4) nanocomposite and maleic acid functionalized NC/magnetite (NCMA-Fe3O4) nanocomposite were prepared and used as fillers at various concentrations (5, 10 and 15 wt. %) in the polycaprolactone (PCL) layer. PE was coated with a PCL/NC//magnetite layer. The addition of the filler did not unfavorably affect the inherent properties of the polymer, especially its barrier properties. Oxygen permeation measurements showed that the oxygen barrier properties of magnetite enriched PCL film were improved due to the chemical activity of the added material. The highest level of the barrier capacity was observed for PE samples coated with a PCL-based composite with NCMA-Fe3O4 micro/nanofiller, which implies a significant contribution of the surface modification of the nanocellulose with maleic anhydride residue to the improved barrier properties.", publisher = "Srpsko hemijsko društvo, Beograd", journal = "Journal of the Serbian Chemical Society", title = "A study of the barrier properties of polyethylene coated with a nanocellulose/magnetite composite film", pages = "605-589", number = "5", volume = "81", doi = "10.2298/JSC151217019D", url = "conv_1217" }
Đorđević, N., Marinković, A. D., Nikolić, J. B., Drmanić, S. Z., Rančić, M., Brković, D. V.,& Uskoković, P. S.. (2016). A study of the barrier properties of polyethylene coated with a nanocellulose/magnetite composite film. in Journal of the Serbian Chemical Society Srpsko hemijsko društvo, Beograd., 81(5), 589-605. https://doi.org/10.2298/JSC151217019D conv_1217
Đorđević N, Marinković AD, Nikolić JB, Drmanić SZ, Rančić M, Brković DV, Uskoković PS. A study of the barrier properties of polyethylene coated with a nanocellulose/magnetite composite film. in Journal of the Serbian Chemical Society. 2016;81(5):589-605. doi:10.2298/JSC151217019D conv_1217 .
Đorđević, Nenad, Marinković, Aleksandar D., Nikolić, Jasmina B., Drmanić, Saša Z., Rančić, Milica, Brković, Danijela V., Uskoković, Petar S., "A study of the barrier properties of polyethylene coated with a nanocellulose/magnetite composite film" in Journal of the Serbian Chemical Society, 81, no. 5 (2016):589-605, https://doi.org/10.2298/JSC151217019D ., conv_1217 .