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Optimizing endoscope lens performance with PTFE hydrophobic surface treatment via dip and spin coating

  • 04-06-2025
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Abstract

The article delves into the critical role of endoscopes in medical diagnostics and surgery, highlighting the challenges posed by contaminants such as bodily fluids, which can impair imaging quality. It emphasizes the need for hydrophobic coatings to maintain optimal visual clarity during endoscopic procedures. The study focuses on PTFE, a polymeric material renowned for its excellent hydrophobicity, chemical resistance, and biocompatibility, making it ideal for coating endoscope lenses. The research investigates the application of PTFE via dip and spin coating techniques on three distinct polymer substrates: acrylonitrile butadiene styrene (ABS), styrene acrylonitrile (SAN), and polycarbonate (PC). The effects of PTFE concentration and coating speed on the physicochemical properties of the coated surfaces are thoroughly analyzed. The article presents a comparative analysis of the most promising samples with commercially coated PC samples, revealing the superior hydrophobicity and light transmittance of PTFE-coated SAN. Additionally, the study explores the thermal stability and surface morphology of the coated samples, providing a comprehensive understanding of the coating's effectiveness and potential applications in enhancing endoscope lens performance.

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Title
Optimizing endoscope lens performance with PTFE hydrophobic surface treatment via dip and spin coating
Authors
Shin-Yong Yeoh
Yun-Lin Liu
Chee-Heong Ooi
Wee-Keat Cheah
Kuan-Yew Cheong
Kun-Yi Andrew Lin
Fei-Yee Yeoh
Publication date
04-06-2025
Publisher
Springer US
Published in
Journal of Coatings Technology and Research / Issue 5/2025
Print ISSN: 1547-0091
Electronic ISSN: 1935-3804
DOI
https://doi.org/10.1007/s11998-025-01085-9
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    Image Credits
    Nordson Logo/© Nordson Deutschland GmbH, Ecoclean Logo/© SBS Ecoclean Group, Akzo Nobel Power Coatings GmbH/© Akzo Nobel Power Coatings GmbH, Sames GmbH/© Sames GmbH, Karl Bubenhofer AG/© Karl Bubenhofer AG, Munk GmbH/© Munk GmbH, Endress+Hauser Flow Deutschland/© Endress+Hauser Flow Deutschland, IST - International Surface Technology, Chemetall und ZF optimieren den Vorbehandlungsprozess/© Chemetall