Superhydrophobic Surface by Laser Ablation of PDMS
Супергидрофобная поверхность путем лазерной абляции PDMS
2023-08-02
SCID: 54.1/mpvdjxdv
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PDMSlaser ablationmicro/nanoparticlespulsed laser depositionsuperhydrophobic surface
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Abstract (AI)
Superhydrophobic surfaces have important applications in generating anti-icing properties, preventing corrosion, producing anti-biofouling characteristics, and microfluidic devices. One of the most commonly used materials to make superhydrophobic surfaces is poly(dimethylsiloxane) (PDMS). Various techniques, including spin-coating, dip-coating, spray coating, surface etching, and laser-textured mold methods, have been used to make superhydrophobic surfaces. However, all these methods require several steps, the usage of multiple chemicals, and/or surface modifications. In this paper, a one-step, low-cost method to induce superhydrophobicity is described. This was done by the pulsed laser deposition of laser-ablated PDMS micro/nanoparticles, and the method applies to a variety of surfaces. This technique has been demonstrated on three important classes of material─glass, poly(methyl methacrylate) (PMMA), and aluminum. Water contact angles of greater than 150° and roll-off angles of less than 3° were obtained. Optical transmission value of as high as 90% was obtained on glass or PMMA coated with laser-ablated PDMS micro/nanoparticles. Furthermore, this method can also be used to make micron-scale patterned superhydrophobic PDMS surfaces. This would have potential applications in microfluidic microchannels and other optical devices.
Key Findings
1
A one-step, low-cost pulsed laser deposition method creates superhydrophobic surfaces by depositing laser-ablated PDMS micro/nanoparticles.
2
Optical transmission up to 90% was retained on glass or PMMA coated with laser-ablated PDMS particles.
3
The method can produce micron-scale patterned superhydrophobic PDMS surfaces suitable for microfluidic and optical device applications.
4
The technique is applicable to multiple substrate classes including glass, PMMA, and aluminum.
5
Treated surfaces achieved water contact angles >150° and roll-off angles <3°.
Research Object
Superhydrophobic surfaces produced by laser-ablated PDMS micro/nanoparticles deposited on substrates (glass, PMMA, and aluminum)
Research Subject
Induction and characterization of superhydrophobicity (water contact angle, roll-off angle, optical transmission) via a one-step pulsed laser deposition of laser-ablated PDMS micro/nanoparticles, including applicability to patterned PDMS and multiple substrate types
Publication Details
Publication Date
2023-08-02
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