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Erschienen in: Microsystem Technologies 1/2015

01.01.2015 | Technical Paper

Biomimetic superhydrophobic polymer surfaces by replication of hierarchical structures fabricated using precision tooling machine and anodized aluminum oxidation

verfasst von: Donghui Chu, Akihiko Nemoto, Hiroshi Ito

Erschienen in: Microsystem Technologies | Ausgabe 1/2015

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Abstract

This report describes a simple and controllable fabrication method of producing superhydrophobic polymer surfaces replicated from aluminum mold inserts in a thermal nanoimprint prepared using precision tooling and an anodized aluminum oxidation process. This producible fabrication method is applicable in the polymer manufacturing field. Patterned hierarchical polymer structures achieved a contact angle greater than 150° without additional coatings. The contact angles were controlled by changing the nanorod length and area fraction of micro-sized convex. Additionally, patterned polymer structures exhibited droplet evaporation behaviors, which show the hysteresis of the solid surface. The hierarchical polymer structures show lower hysteresis than that of microstructures or nanostructures because of the short continuous contact line of nanoscale three-phase contact line and the large area of the micrometer air pocket.

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Literatur
Zurück zum Zitat Bhushan B (2009) Biomimetics: lessons from nature—an overview. Philos Trans R Soc A 367:1445–1486CrossRef Bhushan B (2009) Biomimetics: lessons from nature—an overview. Philos Trans R Soc A 367:1445–1486CrossRef
Zurück zum Zitat Cassie ABD, Baxter S (1944) Wettability of porous surfaces. Trans Faraday Soc 40:546CrossRef Cassie ABD, Baxter S (1944) Wettability of porous surfaces. Trans Faraday Soc 40:546CrossRef
Zurück zum Zitat Chu DH, Nemoto A, Ito H (2014) Effects of geometric parameters for the superhydrophobicity with the polymer surfaces fabricated by precision tooling machine. Microsyst Technol 20(2):193–200 Chu DH, Nemoto A, Ito H (2014) Effects of geometric parameters for the superhydrophobicity with the polymer surfaces fabricated by precision tooling machine. Microsyst Technol 20(2):193–200
Zurück zum Zitat Cortese B, D’Amone S, Manca M, Viola I, Cingolani R, Gigli G (2008) Superhydrophobicity due to the hierarchical scale roughness of PDMS surfaces. Langmuir 24(6):2712–2718CrossRef Cortese B, D’Amone S, Manca M, Viola I, Cingolani R, Gigli G (2008) Superhydrophobicity due to the hierarchical scale roughness of PDMS surfaces. Langmuir 24(6):2712–2718CrossRef
Zurück zum Zitat Cui Y, Paxson AT, Smyth KM, Varanasi KK (2012) Hierarchical polymeric textures via solvent-induced phase transformation: a single-step production of large-area superhydrophobic surfaces. Colloids Surf A 394:8–13CrossRef Cui Y, Paxson AT, Smyth KM, Varanasi KK (2012) Hierarchical polymeric textures via solvent-induced phase transformation: a single-step production of large-area superhydrophobic surfaces. Colloids Surf A 394:8–13CrossRef
Zurück zum Zitat Deng X, Mammen L, Butt HJ, Vollmer D (2012) Candle soot as a template for a transparent robust superamphiphobic coating. Science 335(6064):67–70CrossRef Deng X, Mammen L, Butt HJ, Vollmer D (2012) Candle soot as a template for a transparent robust superamphiphobic coating. Science 335(6064):67–70CrossRef
Zurück zum Zitat Feng L, Zhang Y, Xi J, Zhu Y, Wang N, Xia F, Jiang L (2008) Petal effect: a superhydrophobic state with high adhesive force. Langmuir 24(8):4114–4119CrossRef Feng L, Zhang Y, Xi J, Zhu Y, Wang N, Xia F, Jiang L (2008) Petal effect: a superhydrophobic state with high adhesive force. Langmuir 24(8):4114–4119CrossRef
Zurück zum Zitat Han W, Wu D, Ming W, Niemantsverdriet H, Thüne PC (2006) Direct catalytic route to superhydrophobic polyethylene films. Langmuir 22(19):7956–7959CrossRef Han W, Wu D, Ming W, Niemantsverdriet H, Thüne PC (2006) Direct catalytic route to superhydrophobic polyethylene films. Langmuir 22(19):7956–7959CrossRef
Zurück zum Zitat Huovinen E, Hirvi J, Suvanto M, Pakkanen TA (2012) Micro–micro hierarchy replacing micro–nano hierarchy: a precisely controlled way to produce wear-resistant superhydrophobic polymer surfaces. Langmuir 28(41):14747–14755CrossRef Huovinen E, Hirvi J, Suvanto M, Pakkanen TA (2012) Micro–micro hierarchy replacing micro–nano hierarchy: a precisely controlled way to produce wear-resistant superhydrophobic polymer surfaces. Langmuir 28(41):14747–14755CrossRef
Zurück zum Zitat Kako T, Nakajima A, Irie H, Kato Z, Uematsu K, Watanabe T, Hashimoto K (2004) Adhesion and sliding of wet snow on a super-hydrophobic surface with hydrophilic channels. J Mater Sci 39(2):547–555CrossRef Kako T, Nakajima A, Irie H, Kato Z, Uematsu K, Watanabe T, Hashimoto K (2004) Adhesion and sliding of wet snow on a super-hydrophobic surface with hydrophilic channels. J Mater Sci 39(2):547–555CrossRef
Zurück zum Zitat Kwon YJ, Patankar N, Choi JK, Lee JH (2009) Design of surface hierarchy for extreme hydrophobicity. Langmuir 25(11):6129–6136CrossRef Kwon YJ, Patankar N, Choi JK, Lee JH (2009) Design of surface hierarchy for extreme hydrophobicity. Langmuir 25(11):6129–6136CrossRef
Zurück zum Zitat Lee SM, Kwon TH (2007) Effects of intrinsic hydrophobicity on wettability of polymer replicas of a superhydrophobic lotus leaf. J Micromech Microeng 17:687–692CrossRef Lee SM, Kwon TH (2007) Effects of intrinsic hydrophobicity on wettability of polymer replicas of a superhydrophobic lotus leaf. J Micromech Microeng 17:687–692CrossRef
Zurück zum Zitat Lee W, Jin MK, Yoo WC, Lee JK (2004) Nanostructuring of a polymeric substrate with well-defined nanometer-scale topography and tailored surface wettability. Langmuir 20(18):7665–7669CrossRef Lee W, Jin MK, Yoo WC, Lee JK (2004) Nanostructuring of a polymeric substrate with well-defined nanometer-scale topography and tailored surface wettability. Langmuir 20(18):7665–7669CrossRef
Zurück zum Zitat Li AP, Müller F, Birner A, Nielsch K, Gösele U (1998) Hexagonal pore arrays with a 50–420 nm interpore distance formed by self-organization in anodic alumina. J Appl Phys 84(11):6023–6026CrossRef Li AP, Müller F, Birner A, Nielsch K, Gösele U (1998) Hexagonal pore arrays with a 50–420 nm interpore distance formed by self-organization in anodic alumina. J Appl Phys 84(11):6023–6026CrossRef
Zurück zum Zitat Masuda H, Yamada H, Satoh M, Asoh H, Nakao M, Tamamura T (1997) Highly ordered nanochannel-array architecture in anodic alumina. Appl Phys Lett 71(19):2770–2772CrossRef Masuda H, Yamada H, Satoh M, Asoh H, Nakao M, Tamamura T (1997) Highly ordered nanochannel-array architecture in anodic alumina. Appl Phys Lett 71(19):2770–2772CrossRef
Zurück zum Zitat Saarikoski I, Suvanto M, Pakkanen TA (2009) Modification of polycarbonate surface properties by nano-, micro-, and hierarchical micro–nanostructuring. Appl Surf Sci 255(22):9000–9005CrossRef Saarikoski I, Suvanto M, Pakkanen TA (2009) Modification of polycarbonate surface properties by nano-, micro-, and hierarchical micro–nanostructuring. Appl Surf Sci 255(22):9000–9005CrossRef
Zurück zum Zitat Saarikoski I, Joki-Korpela F, Suvanto M, Pakkanen TT, Pakkanen TA (2012) Superhydrophobic elastomer surfaces with nanostructured micronails. Surf Sci 606(2):91–98CrossRef Saarikoski I, Joki-Korpela F, Suvanto M, Pakkanen TT, Pakkanen TA (2012) Superhydrophobic elastomer surfaces with nanostructured micronails. Surf Sci 606(2):91–98CrossRef
Zurück zum Zitat Soolaman DM, Yu H (2005) Water microdroplets on molecularly tailored surfaces: correlation between wetting hysteresis and evaporation mode switching. J Phys Chem B 109(38):17967–17973CrossRef Soolaman DM, Yu H (2005) Water microdroplets on molecularly tailored surfaces: correlation between wetting hysteresis and evaporation mode switching. J Phys Chem B 109(38):17967–17973CrossRef
Zurück zum Zitat Sun M, Luo C, Xu L, Ji H, Ouyang Q, Yu D, Chen Y (2005) Nonspherical colloidal crystals fabricated by the thermal pressing of colloidal crystal chips. Langmuir 21(19):8978–8991CrossRef Sun M, Luo C, Xu L, Ji H, Ouyang Q, Yu D, Chen Y (2005) Nonspherical colloidal crystals fabricated by the thermal pressing of colloidal crystal chips. Langmuir 21(19):8978–8991CrossRef
Zurück zum Zitat Xue CH, Jia ST, Zhang J, Ma JZ (2010) Large-area fabrication of superhydrophobic surfaces for practical applications: an overview. Sci Technol Adv Mater 11:1–15CrossRef Xue CH, Jia ST, Zhang J, Ma JZ (2010) Large-area fabrication of superhydrophobic surfaces for practical applications: an overview. Sci Technol Adv Mater 11:1–15CrossRef
Zurück zum Zitat Zhang C, Zhu X, Zhou L (2011) Morphology tunable pinning force and evaporation modes of water droplets on PDMS spherical cap micron arrays. Chem Phys Lett 508:134–138CrossRef Zhang C, Zhu X, Zhou L (2011) Morphology tunable pinning force and evaporation modes of water droplets on PDMS spherical cap micron arrays. Chem Phys Lett 508:134–138CrossRef
Zurück zum Zitat Zhu K, Vinzant TB, Neale NR, Frank AJ (2007) Removing structural disorder from oriented TiO2 nanotube arrays: reducing the dimensionality of transport and recombination in dye-sensitized solar cells. Nano Lett 7(12):3739–3746CrossRef Zhu K, Vinzant TB, Neale NR, Frank AJ (2007) Removing structural disorder from oriented TiO2 nanotube arrays: reducing the dimensionality of transport and recombination in dye-sensitized solar cells. Nano Lett 7(12):3739–3746CrossRef
Metadaten
Titel
Biomimetic superhydrophobic polymer surfaces by replication of hierarchical structures fabricated using precision tooling machine and anodized aluminum oxidation
verfasst von
Donghui Chu
Akihiko Nemoto
Hiroshi Ito
Publikationsdatum
01.01.2015
Verlag
Springer Berlin Heidelberg
Erschienen in
Microsystem Technologies / Ausgabe 1/2015
Print ISSN: 0946-7076
Elektronische ISSN: 1432-1858
DOI
https://doi.org/10.1007/s00542-014-2152-5

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