Forming Covalent Crosslinks between Polymer‐Grafted Nanoparticles as a Route to Highly Filled and Mechanically Robust Nanocomposites
Тип публикации: Journal Article
Дата публикации: 2019-08-25
scimago Q1
wos Q1
БС1
SJR: 5.439
CiteScore: 27.7
Impact factor: 19
ISSN: 1616301X, 16163028
Electronic, Optical and Magnetic Materials
Electrochemistry
Condensed Matter Physics
Biomaterials
Краткое описание
Filler aggregation in polymer matrix nanocomposites leads to inhomogeneity in particle distribution and deterioration of mechanical properties. The use of polymer-grafted nanoparticles (PGNPs) with polymers directly attached to the particle surfaces precludes aggregation of the filler. However, solids composed of PGNPs are mechanically weak unless the grafted chains are long enough to form entanglements between particles, and requiring long grafts limits the achievable filler density of the nanocomposite. In this work, long, entangled grafts are replaced with short reactive polymers that form covalent crosslinks between particles. Crosslinkable PGNPs, referred to as XNPs, can be easily processed from solution and subsequently cured to yield a highly filled yet mechanically robust composite. In this specific instance, silica nanoparticles are grafted with poly(glycidyl methacrylate), cast into films, and crosslinked with multifunctional amines at elevated temperatures. Indentation and scratch experiments show significant enhancement of hardness, modulus, and scratch resistance compared to non-crosslinked PGNPs and to crosslinked polymer films without nanoparticle reinforcement. Loadings of up to 57 wt% are achieved while yielding uniform films that deform locally in a predominantly elastic manner. XNPs therefore potentially allow for the formulation of robust nanocomposites with a high level of functionality imparted by the selected filler particles.
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Kubiak J. M., Macfarlane R. Forming Covalent Crosslinks between Polymer‐Grafted Nanoparticles as a Route to Highly Filled and Mechanically Robust Nanocomposites // Advanced Functional Materials. 2019. Vol. 29. No. 44. p. 1905168.
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Kubiak J. M., Macfarlane R. Forming Covalent Crosslinks between Polymer‐Grafted Nanoparticles as a Route to Highly Filled and Mechanically Robust Nanocomposites // Advanced Functional Materials. 2019. Vol. 29. No. 44. p. 1905168.
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TY - JOUR
DO - 10.1002/adfm.201905168
UR - https://doi.org/10.1002/adfm.201905168
TI - Forming Covalent Crosslinks between Polymer‐Grafted Nanoparticles as a Route to Highly Filled and Mechanically Robust Nanocomposites
T2 - Advanced Functional Materials
AU - Kubiak, Joshua M
AU - Macfarlane, Robert
PY - 2019
DA - 2019/08/25
PB - Wiley
SP - 1905168
IS - 44
VL - 29
SN - 1616-301X
SN - 1616-3028
ER -
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@article{2019_Kubiak,
author = {Joshua M Kubiak and Robert Macfarlane},
title = {Forming Covalent Crosslinks between Polymer‐Grafted Nanoparticles as a Route to Highly Filled and Mechanically Robust Nanocomposites},
journal = {Advanced Functional Materials},
year = {2019},
volume = {29},
publisher = {Wiley},
month = {aug},
url = {https://doi.org/10.1002/adfm.201905168},
number = {44},
pages = {1905168},
doi = {10.1002/adfm.201905168}
}
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MLA
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Kubiak, Joshua M., and Robert Macfarlane. “Forming Covalent Crosslinks between Polymer‐Grafted Nanoparticles as a Route to Highly Filled and Mechanically Robust Nanocomposites.” Advanced Functional Materials, vol. 29, no. 44, Aug. 2019, p. 1905168. https://doi.org/10.1002/adfm.201905168.