19 li ycai wcao bduan gsun fli c and jia l two

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19. Li, Y.;Cai, W.;Cao, B.;Duan, G.;Sun, F.;Li, C. and Jia, L., Two dimensional hierarchical porous silica film and its tunable superhydrophobicity. Nanotechnology, 2006. 17 (1): p. 238. 20. Brassard, J. D.;Sarkar, D.K. and Perron, J., Synthesis of Monodisperse Fluorinated Silica Nanoparticles and Their Superhydrophobic Thin Films. ACS Applied Materials & Interfaces, 2011. 3 (9): p. 3583 3588. 21. Brassard, J. D.;Sarkar, D.K. and Perron, J., Fluorine Based Superhydrophobic Coatings. Applied Sciences, 2012. 2 (2): p. 453 464. 22. Zhou, H.;Wang, H.;Niu, H.;Gestos, A.;Wang, X. and Lin, T., Fluoroalkyl Silane Modified Silicone Rubber/Nanoparticle Composite: A Super Durable, Robust Superhydrophobic Fabric Coating. Adv. Mater., 2012. 24 (18): p. 2409 2412. 23. Wang, H.;Fang, J.;Cheng, T.;Ding, J.;Qu, L.;Dai, L.;Wang, X. and Lin, T., One step coating of fluoro containing silica nanoparticles for universal generation of surface superhydrophobicity. Chem. Commun., 2008(7): p. 877 879. 24. Saleema, N.;Sarkar, D.K.;Gallant, D.;Paynter, R.W. and Chen, X.G., Chemical Nature of Superhydrophobic Aluminum Alloy Surfaces Produced via a One Step Process Using Fluoroalkyl Silane in a Base Medium. ACS Applied Materials & Interfaces, 2011. 3 (12): p. 4775 4781. 25. Bernagozzi, I.;Antonini, C.;Villa, F. and Marengo, M., Fabricating superhydrophobic aluminum: An optimized one step wet synthesis using fluoroalkyl silane. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 2014. 441 (0): p. 919 924. 26. Saleema, N.;Sarkar, D.K.;Paynter, R.W. and Chen, X.G., Superhydrophobic Aluminum Alloy Surfaces by a Novel One Step Process. ACS Applied Materials & Interfaces, 2010. 2 (9): p. 2500 2502. 27. Venkateswara Rao, A.;Latthe, S.S.;Nadargi, D.Y.;Hirashima, H. and Ganesan, V., Preparation of MTMS based transparent superhydrophobic silica films by sol–gel method. J. Colloid Interface Sci., 2009. 332 (2): p. 484 490. 28. Hozumi, A.;Ushiyama, K.;Sugimura, H. and Takai, O., Fluoroalkylsilane Monolayers Formed by Chemical Vapor Surface Modification on Hydroxylated Oxide Surfaces. Langmuir, 1999. 15 (22): p. 7600 7604. 29. Miwa, M.;Nakajima, A.;Fujishima, A.;Hashimoto, K. and Watanabe, T., Effects of the Surface Roughness on Sliding Angles of Water Droplets on Superhydrophobic Surfaces. Langmuir, 2000. 16 (13): p. 5754 5760. 30. Shirtcliffe, N.J.;McHale, G.;Newton, M.I.;Perry, C.C. and Pyatt, F.B., Plastron properties of a superhydrophobic surface. Appl. Phys. Lett., 2006. 89 (10): p. . 31. Latthe, S.S.;Sudhagar, P.;Ravidhas, C.;Jennifer Christy, A.;David Kirubakaran, D.;Venkatesh, R.;Devadoss, A.;Terashima, C.;Nakata, K. and Fujishima, A., Self cleaning and superhydrophobic CuO coating by jet nebulizer spray pyrolysis technique. CrystEngComm, 2015. 17 (13): p. 2624 2628. 32. Lu, Y.;Sathasivam, S.;Song, J.;Crick, C.R.;Carmalt, C.J. and Parkin, I.P., Robust self cleaning surfaces that function when exposed to either air or oil. Science, 2015. 347 (6226): p. 1132 1135.
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Page 17 of 28 Accepted Manuscript 33. Yoon, H.;Kim, H.;Latthe, S.S.;Kim, M. w.;Al Deyab, S. and Yoon, S.S., A highly transparent self cleaning superhydrophobic surface by organosilane coated alumina particles deposited via electrospraying. Journal of Materials Chemistry A, 2015.
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