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August 15, 2025Langmuir36 citations

Friction-Induced PTFE Coating on Dental Restorative Resin with Ultralow Friction and Wear

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HLHao LinXYXiao-Ping YinZWZe Wang

Key Points

  • FIPC significantly reduces wear in dental restorative materials, improving their longevity and performance.
  • In tribological tests, the FIPC composite resin maintained a coefficient of friction between 0.05-0.07, showcasing excellent stability.
  • Analysis using white light interferometry confirmed the ultralow friction properties of the FIPC technology, ensuring durability.
  • FIPC technology offers promising applications beyond dentistry, supporting advancements in biomedical coatings.

Abstract

Dental restorative materials often suffer from premature failure due to wear caused by oral activities, such as brushing and chewing, which remains a critical challenge in clinical practice. To address this issue, we developed a friction-induced PTFE coating (FIPC) technology that constructs transfer films by the friction of PTFE balls and applied it to a novel zirconia/silica (ZrO2/SiO2) gel filler-modified photocurable composite resin. Optical micrographs and Raman spectroscopy results demonstrate that FIPC can be prepared on-demand without damaging the substrate surface. Tribological tests and white light interferometry 3D topography analysis reveal that FIPC exhibits ultralow friction and wear, significantly reducing the coefficient of friction (COF). Particularly, the FIPC composite resin exhibited exceptional long-term lubrication stability, with COF values consistently maintained within 0.05-0.07. FIPC represents a viable technology for dental restorative materials and exhibits promising application prospects in other biomedical coating fields.

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Cite This Study

Lin et al. (2025) studied this question.

synapsesocial.com/papers/68a365560a429f797332b11fhttps://doi.org/10.1021/acs.langmuir.5c03007
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