微织构CNT-PDMS纳米复合材料的可扩展滚涂制备及防污性能评价。

IF 2.6 3区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Biofouling Pub Date : 2024-11-01 Epub Date: 2024-12-09 DOI:10.1080/08927014.2024.2438694
Pouria Zaghari, Onur Özcan, Md Didarul Islam, Benjamin Black, Sipan Liu, S M Naser Shovon, Henry Oliver T Ware, Axel Rosenhahn, Jong Eun Ryu
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引用次数: 0

摘要

本研究探讨了微形貌表面作为一种良性的防污/脱污方法。采用定制的、可扩展的双辊涂覆工艺,通过控制碳纳米管(CNTs)和聚二甲基硅氧烷(PDMS)纳米复合材料的粘弹性不稳定性,制造出仿生工程表面。研究了制备条件(辊速、辊径间隙比)对纳米复合材料温泽尔粗糙度系数、峰值密度、水接触角和拉伸性能的影响。结果表明,减小滚子间隙距离可显著提高样品的疏水性。表面峰密度与粗糙度因子呈正相关。一种有纹理的样品被制造出来,其性能明显优于无纹理的CNT-PDMS,表明表面粗糙度和硅藻附着密度之间存在相关性。动态硅藻附着分析显示,与非纹理碳纳米管- pdms对照样品相比,有纹理样品的Navicula perminuta硅藻的表面覆盖率减少了35%。
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Fabrication and anti-fouling performance assessment of micro-textured CNT-PDMS nanocomposites through the scalable roll-coating process.

This study investigates the micro-topographic surfaces as a benign anti-fouling/fouling-release method. The bio-inspired engineered surfaces were manufactured by controlling the viscoelastic instabilities of carbon nanotubes (CNTs) and polydimethylsiloxane (PDMS) nanocomposites using a customized, scalable two-roll coating process. The effects of manufacturing conditions, i.e., roller speed and roller radius-to-gap ratio, on surface properties, such as Wenzel roughness factor, peak density, water contact angle, and the tensile testing of the nanocomposite, were studied. The results showed that decreasing roller gap distance would significantly increase the hydrophobicity of the samples. Moreover, a positive correlation was observed between surface peak density and roughness factor. A textured sample was manufactured that significantly outperformed the non-textured CNT-PDMS, indicating a correlation between surface roughness and diatom attachment density. The dynamic diatom attachment assay showed up to 35% reduction in surface coverage of textured samples by the Navicula perminuta diatom compared to the non-textured CNT-PDMS control samples.

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来源期刊
Biofouling
Biofouling 生物-海洋与淡水生物学
CiteScore
5.00
自引率
7.40%
发文量
57
审稿时长
1.7 months
期刊介绍: Biofouling is an international, peer-reviewed, multi-discliplinary journal which publishes original articles and mini-reviews and provides a forum for publication of pure and applied work on protein, microbial, fungal, plant and animal fouling and its control, as well as studies of all kinds on biofilms and bioadhesion. Papers may be based on studies relating to characterisation, attachment, growth and control on any natural (living) or man-made surface in the freshwater, marine or aerial environments, including fouling, biofilms and bioadhesion in the medical, dental, and industrial context. Specific areas of interest include antifouling technologies and coatings including transmission of invasive species, antimicrobial agents, biological interfaces, biomaterials, microbiologically influenced corrosion, membrane biofouling, food industry biofilms, biofilm based diseases and indwelling biomedical devices as substrata for fouling and biofilm growth, including papers based on clinically-relevant work using models that mimic the realistic environment in which they are intended to be used.
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