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Erschienen in: Journal of Coatings Technology and Research 2/2019

04.09.2018

UV-cured organic–inorganic hybrid moisture barrier materials based on polybutadiene dimethacrylate

verfasst von: Shaohui Liu, Ya Wu, Jun Nie, Yong He

Erschienen in: Journal of Coatings Technology and Research | Ausgabe 2/2019

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Abstract

In this study, a synthesized polymerizable quaternary ammonium salt (PQAS-18) was intercalated into inorganic sodium montmorillonite (Na-MMT) as an organic modifier via cationic exchange. Afterward, a novel organic–inorganic hybrid material was prepared through in situ UV-curing technology and combined with a polymer matrix based on polybutadiene dimethacrylate (PBDMA). PQAS-18 fixed the crosslinked network due to its double bond, thereby leading to firm bonding between the polymer matrix and organoclay; moreover, our study showed homogeneous dispersion of the lamellar structure in the polymer matrix. X-ray diffraction proved that the distance between Na-MMT layers increased, and water vapor transmission measurement showed that the moisture barrier property of cured hybrid film was remarkably improved.

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Literatur
1.
Zurück zum Zitat Sinha Ray, S, Okamoto, M, “Polymer/layered Silicate Nanocomposites: a Review from Preparation to Processing.” Prog. Polym. Sci., 28 (11) 1539–1641 (2003)CrossRef Sinha Ray, S, Okamoto, M, “Polymer/layered Silicate Nanocomposites: a Review from Preparation to Processing.” Prog. Polym. Sci., 28 (11) 1539–1641 (2003)CrossRef
2.
Zurück zum Zitat Egger, DA, Rappe, AM, Kronik, L, “Hybrid Organic–Inorganic Perovskites on the Move.” Acc. Chem. Res., 49 (3) 573–581 (2016)CrossRef Egger, DA, Rappe, AM, Kronik, L, “Hybrid Organic–Inorganic Perovskites on the Move.” Acc. Chem. Res., 49 (3) 573–581 (2016)CrossRef
3.
Zurück zum Zitat Spoljaric, S, Salminen, A, Dang Luong, N, Lahtinen, P, Vartiainen, J, Tammelin, T, Seppälä, J, “Nanofibrillated Cellulose, Poly(Vinyl Alcohol), Montmorillonite Clay Hybrid Nanocomposites with Superior Barrier and Thermomechanical Properties.” Polym. Compos., 35 1117–1131 (2014) Spoljaric, S, Salminen, A, Dang Luong, N, Lahtinen, P, Vartiainen, J, Tammelin, T, Seppälä, J, “Nanofibrillated Cellulose, Poly(Vinyl Alcohol), Montmorillonite Clay Hybrid Nanocomposites with Superior Barrier and Thermomechanical Properties.” Polym. Compos., 35 1117–1131 (2014)
4.
Zurück zum Zitat Ozkaya, B, Mitschker, F, Ozcan, O, Awakowicz, P, Grundmeier, G, “Inhibition of Interfacial Oxidative Degradation During SiOxPlasma Polymer Barrier Film Deposition on Model Organic Substrates.” Plasma Process. Polym., 12 (4) 392–397 (2015)CrossRef Ozkaya, B, Mitschker, F, Ozcan, O, Awakowicz, P, Grundmeier, G, “Inhibition of Interfacial Oxidative Degradation During SiOxPlasma Polymer Barrier Film Deposition on Model Organic Substrates.” Plasma Process. Polym., 12 (4) 392–397 (2015)CrossRef
5.
Zurück zum Zitat Majee, S, Geffroy, B, Bonnassieux, Y, Bourée, J-E, “Interface Effects on the Moisture Barrier Properties of SiNx/PMMA/SiNx Hybrid Structure.” Surf. Coat. Technol., 254 429–432 (2014)CrossRef Majee, S, Geffroy, B, Bonnassieux, Y, Bourée, J-E, “Interface Effects on the Moisture Barrier Properties of SiNx/PMMA/SiNx Hybrid Structure.” Surf. Coat. Technol., 254 429–432 (2014)CrossRef
6.
Zurück zum Zitat Soonjong, K, Jaeho, J, Jung, E-S, “Gas Barrier Film with a Compositional Gradient Interface Prepared by Plasma Modification of an Organic/Inorganic Hybrid Sol-Gel Coat.” Langmuir, 25 (14) 8051–8055 (2009)CrossRef Soonjong, K, Jaeho, J, Jung, E-S, “Gas Barrier Film with a Compositional Gradient Interface Prepared by Plasma Modification of an Organic/Inorganic Hybrid Sol-Gel Coat.” Langmuir, 25 (14) 8051–8055 (2009)CrossRef
7.
Zurück zum Zitat Tzeng, P, Stevens, B, Devlaming, I, Grunlan, JC, “Polymer-Graphene Oxide Quadlayer Thin-Film Assemblies with Improved Gas Barrier.” Langmuir, 31 (21) 5919–5927 (2015)CrossRef Tzeng, P, Stevens, B, Devlaming, I, Grunlan, JC, “Polymer-Graphene Oxide Quadlayer Thin-Film Assemblies with Improved Gas Barrier.” Langmuir, 31 (21) 5919–5927 (2015)CrossRef
8.
Zurück zum Zitat Kiliaris, P, Papaspyrides, CD, “Polymer/Layered Silicate (Clay) Nanocomposites: An Overview of Flame Retardancy.” Prog. Polym. Sci., 35 (7) 902–958 (2010)CrossRef Kiliaris, P, Papaspyrides, CD, “Polymer/Layered Silicate (Clay) Nanocomposites: An Overview of Flame Retardancy.” Prog. Polym. Sci., 35 (7) 902–958 (2010)CrossRef
9.
Zurück zum Zitat Huang, Q, Cosimbescu, L, Koech, P, Choi, D, Lemmon, JP, “Composite Organic Radical–Inorganic Hybrid Cathode for Lithium-Ion Batteries.” J. Power Sour., 233 69–73 (2013)CrossRef Huang, Q, Cosimbescu, L, Koech, P, Choi, D, Lemmon, JP, “Composite Organic Radical–Inorganic Hybrid Cathode for Lithium-Ion Batteries.” J. Power Sour., 233 69–73 (2013)CrossRef
10.
Zurück zum Zitat Wang, Y-W, Yen, C-T, Chen, W-C, “Photosensitive Polyimide/Silica Hybrid Optical Materials: Synthesis, Properties, and Patterning.” Polymer, 46 (18) 6959–6967 (2005)CrossRef Wang, Y-W, Yen, C-T, Chen, W-C, “Photosensitive Polyimide/Silica Hybrid Optical Materials: Synthesis, Properties, and Patterning.” Polymer, 46 (18) 6959–6967 (2005)CrossRef
11.
Zurück zum Zitat Thiyagu, S, Hsueh, CC, Liu, CT, Syu, HJ, Lin, TC, Lin, CF, “Hybrid Organic–Inorganic Heterojunction Solar Cells with 12% Efficiency by Utilizing Flexible Film-Silicon with a Hierarchical Surface.” Nanoscale, 6 (6) 3361–3366 (2014)CrossRef Thiyagu, S, Hsueh, CC, Liu, CT, Syu, HJ, Lin, TC, Lin, CF, “Hybrid Organic–Inorganic Heterojunction Solar Cells with 12% Efficiency by Utilizing Flexible Film-Silicon with a Hierarchical Surface.” Nanoscale, 6 (6) 3361–3366 (2014)CrossRef
12.
Zurück zum Zitat Li, A, Shen, H, Ren, H, Wang, C, Wu, D, Martin, RA, Qiu, D, “Bioactive Organic/Inorganic Hybrids with Improved Mechanical Performance.” J. Mater. Chem. B, 3 (7) 1379–1390 (2015)CrossRef Li, A, Shen, H, Ren, H, Wang, C, Wu, D, Martin, RA, Qiu, D, “Bioactive Organic/Inorganic Hybrids with Improved Mechanical Performance.” J. Mater. Chem. B, 3 (7) 1379–1390 (2015)CrossRef
13.
Zurück zum Zitat Jia, X, Zheng, J, Lin, S, Li, W, Cai, Q, Sui, G, Yang, X, “Highly Moisture-Resistant Epoxy Composites: An Approach Based on Liquid Nano-Reinforcement Containing Well-Dispersed Activated Montmorillonite.” RSC Adv., 5 (56) 44853–44864 (2015)CrossRef Jia, X, Zheng, J, Lin, S, Li, W, Cai, Q, Sui, G, Yang, X, “Highly Moisture-Resistant Epoxy Composites: An Approach Based on Liquid Nano-Reinforcement Containing Well-Dispersed Activated Montmorillonite.” RSC Adv., 5 (56) 44853–44864 (2015)CrossRef
14.
Zurück zum Zitat Solomon, MJ, Almusallam, AS, Seefeldt, KF, Somwangthanaroj, A, Varadan, P, “Rheology of Polypropylene/Clay Hybrid Materials.” Macromolecules, 34 1864–1872 (2001)CrossRef Solomon, MJ, Almusallam, AS, Seefeldt, KF, Somwangthanaroj, A, Varadan, P, “Rheology of Polypropylene/Clay Hybrid Materials.” Macromolecules, 34 1864–1872 (2001)CrossRef
15.
Zurück zum Zitat Kaneko, H, Ishii, R, Suzuki, A, Nakamura, T, Ebina, T, Nge, TT, Yamada, T, “Flexible Clay Glycol Lignin Nanocomposite Film with Heat Durability and High Moisture-Barrier Property.” Appl. Clay Sci., 132–133 425–429 (2016)CrossRef Kaneko, H, Ishii, R, Suzuki, A, Nakamura, T, Ebina, T, Nge, TT, Yamada, T, “Flexible Clay Glycol Lignin Nanocomposite Film with Heat Durability and High Moisture-Barrier Property.” Appl. Clay Sci., 132–133 425–429 (2016)CrossRef
16.
Zurück zum Zitat Galimberti, M, Coombs, M, Cipolletti, V, Spatola, A, Guerra, G, Lostritto, A, Giannini, L, Pandini, S, Riccò, T, “Delaminated and Intercalated Organically Modified Montmorillonite in Poly(1,4-Cis-Isoprene) Matrix. Indications of Counterintuitive Dynamic-Mechanical Behavior.” Appl. Clay Sci., 97–98 8–16 (2014)CrossRef Galimberti, M, Coombs, M, Cipolletti, V, Spatola, A, Guerra, G, Lostritto, A, Giannini, L, Pandini, S, Riccò, T, “Delaminated and Intercalated Organically Modified Montmorillonite in Poly(1,4-Cis-Isoprene) Matrix. Indications of Counterintuitive Dynamic-Mechanical Behavior.” Appl. Clay Sci., 97–98 8–16 (2014)CrossRef
17.
Zurück zum Zitat Krishnamoorti, R, Vaia, RA, Giannelis, EP, “Structure and Dynamics of Polymer-Layered Silicate Nanocomposites.” Chem. Mater., 8 1728–1734 (1996)CrossRef Krishnamoorti, R, Vaia, RA, Giannelis, EP, “Structure and Dynamics of Polymer-Layered Silicate Nanocomposites.” Chem. Mater., 8 1728–1734 (1996)CrossRef
18.
Zurück zum Zitat Deng, Y, Dixon, JB, White, GN, Loeppert, RH, Juo, ASR, “Bonding Between Polyacrylamide and Smectite.” Colloids Surf. A, 281 (1–3) 82–91 (2006)CrossRef Deng, Y, Dixon, JB, White, GN, Loeppert, RH, Juo, ASR, “Bonding Between Polyacrylamide and Smectite.” Colloids Surf. A, 281 (1–3) 82–91 (2006)CrossRef
19.
Zurück zum Zitat Sanqin, W, Zepeng, Z, Yunhu, W, Libing, L, Jiansheng, Z, “Influence of Montmorillonites Exchange Capacity on the Basal Spacing of Cation–Anion Organo-Montmorillonites.” Mater. Res. Bull., 59 59–64 (2014)CrossRef Sanqin, W, Zepeng, Z, Yunhu, W, Libing, L, Jiansheng, Z, “Influence of Montmorillonites Exchange Capacity on the Basal Spacing of Cation–Anion Organo-Montmorillonites.” Mater. Res. Bull., 59 59–64 (2014)CrossRef
20.
Zurück zum Zitat Ohtsuka, K, “Preparation and Properties of Two-Dimensional Microporous Pillared Interlayered Solids.” Chem. Mater., 9 2039–2050 (1997)CrossRef Ohtsuka, K, “Preparation and Properties of Two-Dimensional Microporous Pillared Interlayered Solids.” Chem. Mater., 9 2039–2050 (1997)CrossRef
21.
Zurück zum Zitat Rathnayake, SI, Xi, Y, Frost, RL, Ayoko, GA, “Structural and Thermal Properties of Inorganic–Organic Montmorillonite: Implications for Their Potential Environmental Applications.” J. Colloid Interf. Sci., 459 17–28 (2015)CrossRef Rathnayake, SI, Xi, Y, Frost, RL, Ayoko, GA, “Structural and Thermal Properties of Inorganic–Organic Montmorillonite: Implications for Their Potential Environmental Applications.” J. Colloid Interf. Sci., 459 17–28 (2015)CrossRef
22.
Zurück zum Zitat Lee, S-D, Park, M-S, Kim, D-W, Kim, I, Park, D-W, “Catalytic Performance of Ion-Exchanged Montmorillonite with Quaternary Ammonium Salts for the Glycerolysis of Urea.” Catal. Today, 232 127–133 (2014)CrossRef Lee, S-D, Park, M-S, Kim, D-W, Kim, I, Park, D-W, “Catalytic Performance of Ion-Exchanged Montmorillonite with Quaternary Ammonium Salts for the Glycerolysis of Urea.” Catal. Today, 232 127–133 (2014)CrossRef
23.
Zurück zum Zitat Tan, H, Nie, J, “Photopolymerization and Characteristics of Polyurethane/Organoclay Nanocomposites.” Macromol. React. Eng., 1 (3) 384–390 (2007)CrossRef Tan, H, Nie, J, “Photopolymerization and Characteristics of Polyurethane/Organoclay Nanocomposites.” Macromol. React. Eng., 1 (3) 384–390 (2007)CrossRef
24.
Zurück zum Zitat Sanchez, C, Julián, B, Belleville, P, Popall, M, “Applications of Hybrid Organic–Inorganic Nanocomposites.” J. Mater. Chem., 15 (35–36) 3559 (2005)CrossRef Sanchez, C, Julián, B, Belleville, P, Popall, M, “Applications of Hybrid Organic–Inorganic Nanocomposites.” J. Mater. Chem., 15 (35–36) 3559 (2005)CrossRef
25.
Zurück zum Zitat Vezir Kahraman, M, Kuğu, M, Menceloğlu, Y, Kayaman-Apohan, N, Güngör, A, “The Novel Use of Organo Alkoxy Silane for the Synthesis of Organic–Inorganic Hybrid Coatings.” J. Non-Cryst. Solids, 352 (21–22) 2143–2151 (2006)CrossRef Vezir Kahraman, M, Kuğu, M, Menceloğlu, Y, Kayaman-Apohan, N, Güngör, A, “The Novel Use of Organo Alkoxy Silane for the Synthesis of Organic–Inorganic Hybrid Coatings.” J. Non-Cryst. Solids, 352 (21–22) 2143–2151 (2006)CrossRef
26.
Zurück zum Zitat Chen, C, Chung, M, Hsieh, T, Liu, M, Lin, J, Chu, W, Tang, R, Tsai, Y, Juang, F, “Synthesis, Thermal Characterization, and Gas Barrier Properties of UV Curable Organic/Inorganic Hybrid Nanocomposites with Metal Alloys and Their Application for Encapsulation of Organic Solar Cells.” Compos. Sci. Technol., 68 (14) 3041–3046 (2008)CrossRef Chen, C, Chung, M, Hsieh, T, Liu, M, Lin, J, Chu, W, Tang, R, Tsai, Y, Juang, F, “Synthesis, Thermal Characterization, and Gas Barrier Properties of UV Curable Organic/Inorganic Hybrid Nanocomposites with Metal Alloys and Their Application for Encapsulation of Organic Solar Cells.” Compos. Sci. Technol., 68 (14) 3041–3046 (2008)CrossRef
27.
Zurück zum Zitat Slavutsky, MA, Bertuzzi, MA, “Improvement of Water Barrier Properties of Starch Films by Lipid Nanolamination.” Food Packag. Shelf Life, 7 41–46 (2016)CrossRef Slavutsky, MA, Bertuzzi, MA, “Improvement of Water Barrier Properties of Starch Films by Lipid Nanolamination.” Food Packag. Shelf Life, 7 41–46 (2016)CrossRef
28.
Zurück zum Zitat Fredrickson, GH, Bicerano, J, “Barrier Properties of Oriented Disk Composites.” J. Chem. Phys., 10 2181–2188 (1999)CrossRef Fredrickson, GH, Bicerano, J, “Barrier Properties of Oriented Disk Composites.” J. Chem. Phys., 10 2181–2188 (1999)CrossRef
29.
Zurück zum Zitat Trifol, J, Plackett, D, Sillard, C, Szabo, P, Bras, J, Daugaard, AE, “Hybrid Poly(Lactic Acid)/Nanocellulose/Nanoclay Composites with Synergistically Enhanced Barrier Properties and Improved Thermomechanical Resistance.” Polym. Int., 65 (8) 988–995 (2016)CrossRef Trifol, J, Plackett, D, Sillard, C, Szabo, P, Bras, J, Daugaard, AE, “Hybrid Poly(Lactic Acid)/Nanocellulose/Nanoclay Composites with Synergistically Enhanced Barrier Properties and Improved Thermomechanical Resistance.” Polym. Int., 65 (8) 988–995 (2016)CrossRef
30.
Zurück zum Zitat Tokudome, Y, Hara, T, Abe, R, Takahashi, M, “Transparent and Robust Siloxane-Based Hybrid Lamella Film as a Water Vapor Barrier Coating.” ACS Appl. Mater. Interf., 6 (21) 19355–19359 (2014)CrossRef Tokudome, Y, Hara, T, Abe, R, Takahashi, M, “Transparent and Robust Siloxane-Based Hybrid Lamella Film as a Water Vapor Barrier Coating.” ACS Appl. Mater. Interf., 6 (21) 19355–19359 (2014)CrossRef
31.
Zurück zum Zitat Sangermano, M, Cook, WD, Papagna, S, Grassini, S, “Hybrid UV-Cured Organic–Inorganic IPNs.” Eur. Polym. J., 48 (10) 1796–1804 (2012)CrossRef Sangermano, M, Cook, WD, Papagna, S, Grassini, S, “Hybrid UV-Cured Organic–Inorganic IPNs.” Eur. Polym. J., 48 (10) 1796–1804 (2012)CrossRef
32.
Zurück zum Zitat Ingrosso, C, Esposito Corcione, C, Striani, R, Comparelli, R, Striccoli, M, Agostiano, A, Curri, ML, Frigione, M, “UV-Curable Nanocomposite Based on Methacrylic-Siloxane Resin and Surface-Modified TiO2 Nanocrystals.” ACS Appl. Mater. Interf., 7 (28) 15494–15505 (2015)CrossRef Ingrosso, C, Esposito Corcione, C, Striani, R, Comparelli, R, Striccoli, M, Agostiano, A, Curri, ML, Frigione, M, “UV-Curable Nanocomposite Based on Methacrylic-Siloxane Resin and Surface-Modified TiO2 Nanocrystals.” ACS Appl. Mater. Interf., 7 (28) 15494–15505 (2015)CrossRef
33.
Zurück zum Zitat Chang, Y-W, Kim, SW, “UV Curable Transparent Urethane-Acrylate/Clay Nanocomposite Coating Materials with Thermal Barrier Property.” Surf. Coat. Technol., 232 182–187 (2013)CrossRef Chang, Y-W, Kim, SW, “UV Curable Transparent Urethane-Acrylate/Clay Nanocomposite Coating Materials with Thermal Barrier Property.” Surf. Coat. Technol., 232 182–187 (2013)CrossRef
34.
Zurück zum Zitat Nkeuwa, WN, Riedl, B, Landry, V, “UV-cured Clay/Based Nanocomposite Topcoats for Wood Furniture: Part I: Morphological Study, Water Vapor Transmission Rate and Optical Clarity.” Prog. Org. Coat., 77 (1) 1–11 (2014)CrossRef Nkeuwa, WN, Riedl, B, Landry, V, “UV-cured Clay/Based Nanocomposite Topcoats for Wood Furniture: Part I: Morphological Study, Water Vapor Transmission Rate and Optical Clarity.” Prog. Org. Coat., 77 (1) 1–11 (2014)CrossRef
35.
Zurück zum Zitat Kim, D, Lim, M, Kim, I, Seo, J, Han, H, “Preparation and Properties of Hydrophobic Layered Silicate-Reinforced UV-Curable Poly(Urethane Acrylate) Nanocomposite Films for Packaging Applications.” Prog. Org. Coat., 77 (6) 1045–1052 (2014)CrossRef Kim, D, Lim, M, Kim, I, Seo, J, Han, H, “Preparation and Properties of Hydrophobic Layered Silicate-Reinforced UV-Curable Poly(Urethane Acrylate) Nanocomposite Films for Packaging Applications.” Prog. Org. Coat., 77 (6) 1045–1052 (2014)CrossRef
36.
Zurück zum Zitat Keller, L, Decker, C, Zahouily, K, Benfarhi, S, Le Meins, JM, Miehe-Brendle, J, “Synthesis of Polymer Nanocomposites by UV-Curing of Organoclay–Acrylic Resins.” Polymer, 45 (22) 7437–7447 (2004)CrossRef Keller, L, Decker, C, Zahouily, K, Benfarhi, S, Le Meins, JM, Miehe-Brendle, J, “Synthesis of Polymer Nanocomposites by UV-Curing of Organoclay–Acrylic Resins.” Polymer, 45 (22) 7437–7447 (2004)CrossRef
37.
Zurück zum Zitat Mirmohammadi, SA, Nekoomanesh-Haghighi, M, Mohammadian Gezaz, S, Bahri-Laleh, N, Atai, M, “In-situ Photocrosslinkable Nanohybrid Elastomer Based on Polybutadiene/Polyhedral Oligomeric Silsesquioxane.” Mater. Sci. Eng., C, 68 530–539 (2016)CrossRef Mirmohammadi, SA, Nekoomanesh-Haghighi, M, Mohammadian Gezaz, S, Bahri-Laleh, N, Atai, M, “In-situ Photocrosslinkable Nanohybrid Elastomer Based on Polybutadiene/Polyhedral Oligomeric Silsesquioxane.” Mater. Sci. Eng., C, 68 530–539 (2016)CrossRef
38.
Zurück zum Zitat Saffari, A, Sheikh, A, “Peroxide Dynamic Crosslinking in Impact Modification of Polypropylene with Polybutadiene.” Polym. Test., 57 260–269 (2017)CrossRef Saffari, A, Sheikh, A, “Peroxide Dynamic Crosslinking in Impact Modification of Polypropylene with Polybutadiene.” Polym. Test., 57 260–269 (2017)CrossRef
39.
Zurück zum Zitat Su, S, Jiang, DD, Wilkie, CA, “Polybutadiene-Modified Clay and its Nanocomposites.” Polym. Degrad. Stab., 84 (2) 279–288 (2004)CrossRef Su, S, Jiang, DD, Wilkie, CA, “Polybutadiene-Modified Clay and its Nanocomposites.” Polym. Degrad. Stab., 84 (2) 279–288 (2004)CrossRef
40.
Zurück zum Zitat Leprince, JG, Hadis, M, Shortall, AC, Ferracane, JL, Devaux, J, Leloup, G, Palin, WM, “Photoinitiator Type and Applicability of Exposure Reciprocity Law in Filled and Unfilled Photoactive Resins.” Dent. Mater., 27 (2) 157–164 (2011)CrossRef Leprince, JG, Hadis, M, Shortall, AC, Ferracane, JL, Devaux, J, Leloup, G, Palin, WM, “Photoinitiator Type and Applicability of Exposure Reciprocity Law in Filled and Unfilled Photoactive Resins.” Dent. Mater., 27 (2) 157–164 (2011)CrossRef
41.
Zurück zum Zitat Uhl, FM, Webster, DC, Davuluri, SP, Wong, S-C, “UV Curable Epoxy Acrylate–Clay Nanocomposites.” Eur. Polymer J., 42 (10) 2596–2605 (2006)CrossRef Uhl, FM, Webster, DC, Davuluri, SP, Wong, S-C, “UV Curable Epoxy Acrylate–Clay Nanocomposites.” Eur. Polymer J., 42 (10) 2596–2605 (2006)CrossRef
42.
Zurück zum Zitat Alexandre, M, Dubois, P, “Polymer-Layered Silicate Nanocomposites: Preparation, Properties and Uses of a New Class of Materials.” Mater. Sci. Eng., 28 1–63 (2000)CrossRef Alexandre, M, Dubois, P, “Polymer-Layered Silicate Nanocomposites: Preparation, Properties and Uses of a New Class of Materials.” Mater. Sci. Eng., 28 1–63 (2000)CrossRef
43.
Zurück zum Zitat Wei, H-S, Liu, K-T, Chang, Y-C, Chan, C-H, Lee, C-C, Kuo, C-C, “Superior Mechanical Properties of Hybrid Organic–Inorganic Superhydrophilic Thin Film on Plastic Substrate.” Surf. Coat. Technol., 320 377–382 (2017)CrossRef Wei, H-S, Liu, K-T, Chang, Y-C, Chan, C-H, Lee, C-C, Kuo, C-C, “Superior Mechanical Properties of Hybrid Organic–Inorganic Superhydrophilic Thin Film on Plastic Substrate.” Surf. Coat. Technol., 320 377–382 (2017)CrossRef
Metadaten
Titel
UV-cured organic–inorganic hybrid moisture barrier materials based on polybutadiene dimethacrylate
verfasst von
Shaohui Liu
Ya Wu
Jun Nie
Yong He
Publikationsdatum
04.09.2018
Verlag
Springer US
Erschienen in
Journal of Coatings Technology and Research / Ausgabe 2/2019
Print ISSN: 1547-0091
Elektronische ISSN: 1935-3804
DOI
https://doi.org/10.1007/s11998-018-0121-0

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