Facile Fabrication of Multifunctional Superhydrophobic Surfaces Synthesized by the Additive Manufacturing Technique Modified with ZnO Nanoparticles

被引:0
|
作者
Sherin, P. A. Thanseeha [1 ]
Bandaru, Shamili [2 ]
Motapothula, Mallikarjuna Rao [1 ]
Dalapati, Goutam Kumar [3 ]
Sangaraju, Sambasivam [4 ]
Krishnamurthy, Satheesh [5 ]
Ball, Writoban Basu [6 ]
Chakrabortty, Sabyasachi [2 ]
Ghosh, Siddhartha [1 ]
机构
[1] SRM Univ AP Andhra Pradesh, Dept Phys, Mangalagiri 522502, Andhra Prades, India
[2] SRM Univ AP Andhra Pradesh, Dept Chem, Mangalagiri 522502, Andhra Prades, India
[3] Natl Univ Singapore, Ctr Nanofiber & Nanotechnol, Mech Engn Dept, Singapore 117576, Singapore
[4] United Arab Emirates Univ, Natl Water & Energy Ctr, Al Ain 15551, U Arab Emirates
[5] Univ Surrey, Surrey Ion Bean Ctr, Guildford GU2 7XH, England
[6] SRM Univ AP Andhra Pradesh, Dept Biol Sci, Mangalagiri 522502, Andhra Prades, India
关键词
SELF-CLEANING SURFACES; RICE-LEAF; DRAG REDUCTION; LOTUS;
D O I
10.1021/acs.langmuir.4c03907
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
This article reports facile fabrication of a multifunctional smart surface having superhydrophobic self-cleaning property, superoleophilicity, and antimicrobial property. These smart surfaces have been synthesized using the stereolithography (SLA) method of the additive manufacturing technique. SLA is a fast additive manufacturing technique used to create complex parts with intricate geometries. A wide variety of materials and high-resolution techniques can be utilized to create functional parts such as superhydrophobic surfaces. Various materials have been studied to improve the functionality of 3D printing. However, the fabrication of such materials is not easy, as it is quite expensive. In this work, we used a commercially available SLA printer and its photopolymer resin to create various micropatterned surfaces. Additionally, we applied a low surface energy coating with ZnO nanoparticles and tetraethyl orthosilicate to create hierarchical roughness. The wettability studies of created superhydrophobic surfaces were evaluated by means of static contact angle using the sessile drop method and rolling angle measurements. The effects of various factors, including different concentrations of coating mixture, drying temperatures, patterns (pyramids, pillars, and eggbeater structures), and pillar spacing, were studied in relation to contact angles. Subsequently, all the functional properties (i.e., self-cleaning, oleophilicity, and antibacterial properties) of the as-obtained surfaces were demonstrated using data, images, and supporting videos. This inexpensive and scalable process can be easily replicated with an SLA 3D printer and photopolymer resin for many applications such as self-cleaning, oil-water separation, channel-less microfluidics, antibacterial coating, etc.
引用
收藏
页码:2312 / 2322
页数:11
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