Leppäniemi Jarmo, Hoshian Sasha, Suomalainen Kimmo, Luoto Toni, Jokinen Ville, Koskinen Jari
Department of Material Science, Aalto University School of Chemical Technology, Espoo, Finland.
Unit for Oral and Maxillofacial Diseases, Tampere University Hospital, Tampere, Finland.
Eur J Oral Sci. 2017 Dec;125(6):495-503. doi: 10.1111/eos.12372. Epub 2017 Sep 18.
The non-stick properties of thin-film coatings on dental-restorative instruments were investigated by static contact-angle measurement using dental filler resin as well as by scanning electron microscopy of the amount of sticking dental restorative material. Furthermore, using a customized dipping measurement set-up, non-stick properties were evaluated by measuring force-by-time when the instrument was pulled out of restorative material. Minor improvements in non-stick properties were obtained with commercial diamond-like carbon and commercial polytetrafluoroethylene-based coatings. Major improvements were obtained with an in-house fabricated superhydrophobic coating prepared by a multistep process consisting of surface microstructuring by etching in hydrogen fluoride (HF): hydrogen peroxide (H O ) (1:1; vol/vol), atomic layer deposition of a 7 nm coating of aluminium oxide and titanium oxide, and a self-assembled monolayer of fluorinated organosilicon. Superhydrophobic coatings provide a possible future solution to prevent unwanted adnerence of composite restorative material to dental instruments.
通过使用牙科填充树脂进行静态接触角测量以及对粘附的牙科修复材料量进行扫描电子显微镜观察,研究了牙科修复器械上薄膜涂层的不粘性能。此外,使用定制的浸渍测量装置,通过测量器械从修复材料中拔出时的力随时间变化来评估不粘性能。商业类金刚石碳涂层和商业聚四氟乙烯基涂层在不粘性能方面有轻微改善。通过由多步工艺制备的内部制造的超疏水涂层获得了重大改进,该工艺包括在氟化氢(HF):过氧化氢(H₂O₂)(1:1;体积/体积)中蚀刻进行表面微结构化、原子层沉积7纳米的氧化铝和氧化钛涂层以及氟化有机硅的自组装单分子层。超疏水涂层为防止复合修复材料意外粘附到牙科器械上提供了一种未来可能的解决方案。