An investigation of the hydrophobic property stability of grafted polymeric coatings on a cellulose material surface

Polymer Science, Series D - Tập 9 Số 4 - Trang 364-367 - 2016
В. В. Климов1, E. V. Bryuzgin1, Minh Duy Le1, E. A. Zelenova1, Thanh Hoang Long Nguyen2, А. В. Навроцкий1, Hiroyuki Nishide3, И. А. Новаков1
1Volgograd State Technical University, pr. Lenina 28, Volgograd, 400005, Russia
2Hanoi University of Architecture, Km 10, Nguyen Trai, Thanh Xuan, Hanoi, Vietnam
3Waseda University, 3-4-1 Okubo, Shinjuku, Tokyo 169-8555, Japan

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N. Shirtcliffe, G. McHale, Sh. Atherton, and M. Newton, “An introduction to superhydrophobicity,” Adv. Colloid Interface Sci. 161 (1–2), 124–138 (2010).

B. Bhushan and Y. Jung, “Natural and biomimetic artificial surfaces for superhydrophobicity, self-cleaning, low adhesion, and drag reduction,” Progr. Mater. Sci. 56, 1–108 (2011).

Z. Xue, M. Liu, and L. Jiang, “Recent developments in polymeric superoleophobic surfaces,” J. Polym. Sci., Part B: Polym. Phys. 50, 1209—1224 (2012).

A. N. Muranov, G. V. Malysheva, V. A. Nelyub, I. A. Buyanov, I. V. Chudnov, and A. S. Borodulin, “Investigation of properties of polymeric composition materials abound a heterogeneous matrix,” Polym. Sci., Ser. D 6 (3) (2013).

V. A. Nelyub, “Characteristics of interfacial layers of polymer composite materials,” Polym. Sci., Ser. D 7 (4), 310–312 (2014).

L. Boinovich and A. Emelyanenko, “Principles of design of superhydrophobic coatings by deposition from dispersions,” Langmuir 25, 2907–2912 (2009).

B. Balu, V. Breedveld, and D. W. Hess, “Fabrication of “rolloff” and “sticky” superhydrophobic cellulose surfaces via plasma processing,” Langmuir 24, 4785–4790 (2008).

S. Peng, X. Yang, D. Tian, and W. Deng, “Chemically stable and mechanically durable superamphiphobic aluminum surface with a micro/nanoscale binary structure,” ACS Appl. Mater. Interfaces 6, 15188–15197 (2014).

L. Boinovich, A. Emelyanenko, and A. Pashinin, “Analysis of long-term durability of superhydrophobic properties under continuous contact with water,” ACS Appl. Mater. Interfaces 2, 1754–1758 (2010).

E. Bryuzgin, V. Klimov, S. Zaytsev, A. Navrotskiy, and I. Novakov, “Influence of the structure of glycidyl methacrylate copolymers on the hydrophobic properties of cellulose materials,” Adv. Mater. Res. 1098, 98–103 (2015).

E. V. Bryuzgin, V. V. Klimov, O. V. Dvoretskaya, et al., “Hydrophobization of cellulose-containing materials with fluoroacrylic polymers and fatty carboxylic acids,” Russ. J. Appl. Chem. 87 (8), 1119–1125 (2014).