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优异的抗污及自清洁效果。除此之外,通过摩擦实 2019, 1(10): 2659-2667.
[16] CHENG D F, URATA C, YAGIHASHI M, et al. A statically
验评估涂层的耐候性,涂层 P3 在 900 g 下摩擦 100 oleophilic but dynamically oleophobic smooth nonperfluorinated
次后,涂层的疏水性略微降低,但其水接触角仍 surface[J]. Angewandte Chemie International Edition, 2012, 51:
2956-2959.
>95°。最后,该涂层在高铁动车组上得到喷涂测试, [17] CHENG D F, MASHEDER B, URATA C, et al. Smooth
并体现出优异的自清洁效果,该研究为自清洁材料 perfluorinated surfaces with different chemical and physical natures:
Their unusual dynamic dewetting behavior toward polar and
在轨道交通领域的大面积涂装应用提供了可能。 nonpolar liquids[J]. Langmuir, 2013, 29(36): 11322-11329.
[18] CHENG D F, URATA C, MASHEDER B, et al. A physical approach
参考文献: to specifically improve the mobility of alkane liquid drops[J]. Journal
of the American Chemical Society, 2012, 134(24): 10191-10199.
[1] TOGASAWA R, OHNUKI F, SHIRATORI S. A biocompatible slippery
surface based on a boehmite nanostructure with omniphobicity for [19] ZHONG X, LV L, HU H, et al. Bio-based coatings with liquid
hot liquids and boiling stability[J]. ACS Applied Nano Materials, repellency for various applications[J]. Chemical Engineering Journal,
2018, 1(4): 1758-1765. 2020, 382: 123042.
[2] LAN M J (蓝敏杰), WEN Q Z (文庆珍), ZHU J H (朱金华). [20] FADEEV A Y, MCCARTHY T J. Trialkylsilane monolayers covalently
Preparation and application of self-cleaning coating[J]. Materials attached to silicon surfaces: Wettability studies indicating that
Protection (材料保护), 2020, 53(3): 129-134. molecular topography contributes to contact angle hysteresis[J].
[3] SYAFIQ A, BALAKRISHNAN V, ALI M S, et al. Application of Langmuir, 1999, 15(11): 3759-3766.
transparent self-cleaning coating for photovoltaic panel: A review[J]. [21] TENJIMBAYASHI M, TOGASAWA R, MANABE K, et al.
Current Opinion in Chemical Engineering, 2022, 36: 100801. Liquid-infused smooth coating with transparency, super-durability,
[4] GONG X, HE S. Highly durable superhydrophobic polydimethylsiloxane/ and extraordinary hydrophobicity[J]. Advanced Functional Materials,
silica nanocomposite surfaces with good self-cleaning ability[J]. ACS 2016, 26: 6693-6702.
Omega, 2020, 5(8): 4100-4108. [22] MANABE K, KYUNG K H, SHIRATORI S. Biocompatible slippery
[5] MAHARJAN S, LIAO K, WANG A J, et al. Self-cleaning hydrophobic fluid-infused films composed of chitosan and alginate via layer-by-layer
nanocoating on glass: A scalable manufacturing process[J]. Materials self-assembly and their antithrombogenicity[J]. ACS Applied
Chemistry and Physics, 2020, 239: 122000. Materials & Interfaces, 2015, 7(8): 4763-4771.
[6] BARTHLOTT W, NEINHUIS C. Purity of the sacred lotus, or escape [23] WONG T S, KANG S H, TANG S K Y, et al. Bioinspired
from contamination in biological surfaces[J]. Planta, 1997, 202: 1-8. self-repairing slippery surfaces with pressure-stable omniphobicity[J].
[7] TUTEJA A, CHOI W, MA M, et al. Designing superoleophobic Nature, 2011, 477: 443-447.
surfaces[J]. Science, 2007, 318: 1618-1622. [24] LONG C, QING Y, AN K, et al. Functional fluorination agents for
[8] WONG T, KANG S H, TANG S K, et al. Bioinspired self-repairing opposite extreme wettability coatings with robustness, water splash
slippery surfaces with pressure-stable omniphobicity[J]. Nature, inhibition, and controllable oil transport[J]. Chemical Engineering
2011, 477: 443. Journal, 2021, 415: 128895.
[9] TUTEJA A, CHOI W, MABRY J M, et al. Robust omniphobic [25] LIU J (刘佳), YAO G Y (姚光晔). Research on hydrolysis process of
surfaces[J]. Proceedings of the National Academy of Sciences, 2008, silane coupling agent[J]. China Powder Science and Technology (中
105: 18200-18205. 国粉体技术), 2014, 20: 61-63.
[10] QUAN Y Y, ZHANG L Z, QI R H, et al. Self-cleaning of surfaces: [26] XUE F, JIA D, LI Y, et al. Facile preparation of a mechanically
The role of surface wettability and dust types[J]. Scientific Reports, robust superhydrophobic acrylic polyurethane coating[J]. Journal of
2016, 6:1-12. Materials Chemistry A, 2015, 3(26): 13856-13863.
[11] YU M, CHEN S, ZHANG B, et al. Why a lotus-like superhydrophobic [27] XIONG D, LIU G, DUNCAN E J S. Robust amphiphobic coatings
surface is self-cleaning? An explanation from surface force measurements from bi-functional silica particles on flat substrates[J]. Polymer,
and analysis[J]. Langmuir, 2014, 30(45): 13615-13621. 2013, 54(12): 3008-3016.
[12] LATTHE S S, SUTAR R S, KODAG V S, et al. Self-cleaning [28] YUAN S (袁珊), WEI Y L (魏彦龙), TU Y Y (涂园园), et al.
superhydrophobic coatings : Potential industrial applications[J]. Preparation and properties of anti-smudge transparent copolymer
Progress in Organic Coatings, 2019, 128: 52-58. coatings bearing fluorosilicone[J]. Fine Chemicals (精细化工), 2017,
[13] LIU S, LATTHE S S, YANG H, et al. Raspberry-like superhydrophobic 34(12): 1356-1362.
silica coatings with self-cleaning properties[J]. Ceramics International, [29] GENZER J, SIVANIAH E, KRAMER E J, et al. Molecular
2015, 41(9): 11719-11725. orientation of single and two-armed monodendron semifluorinated
[14] CRICK C R, BEAR J C, KAFIZAS A,et al. Superhydrophobic chains on "soft" and "hard" surfaces studied using nexafs[J].
photocatalytic surfaces through direct incorporation of titania Macromolecule, 2000, 33(16): 6068-6077.
nanoparticles into a polymer matrix by aerosol assisted chemical [30] LYU B (吕斌), ZHANG H N (张鹤年), GAO D G (高党鸽).
vapor deposition[J]. Advanced Materials, 2012, 24: 3505-3508. Preparation and antifouling performance of castor oil based
[15] KHAN F, RABNAWAZ M, LI Z, et al. Simple design for durable waterborne polyurethane modified by PDMS[J]. Fine Chemicals (精
and clear self-cleaning coatings[J]. ACS Applied Polymer Materials, 细化工), 2022, 39(3): 541-547.