Shome Arpita, Martinez Isabel, Pinon Vicente D, Moses Joseph C, Garren Mark, Sapkota Aasma, Crutchfield Natalie, Francis Divine J, Brisbois Elizabeth, Handa Hitesh
School of Chemical, Materials and Biomedical Engineering, University of Georgia, Athens, Georgia, 30602, United States of America.
Pharmaceutical and Biomedical Science Department, College of Pharmacy, University of Georgia, Athens, GA 30602, United States.
Adv Funct Mater. 2024 Sep 4;34(36). doi: 10.1002/adfm.202401387. Epub 2024 Apr 18.
Covalent and defect-free surface-grafted solid lubricating chains that can impart slippery behavior have proven advantageous over lubricant infused and textured anti-wetting surfaces. Herein, the co-hydrolysis and co-condensation of a mixture of organosilanes followed by the epoxy-amine ring opening reaction at the interface results in a highly robust, transparent and solid slippery omniphobic coating (LL-OSC). The presence of the epoxy-terminated organosilane a) acts as a molecular spacer in between the low-surface energy, rigid fluorine terminated silane and b) provides 'reactive' epoxy groups for covalent binding to a pre-functionalized amine surface for potential applicability in droplet transport and manipulation, diagnostics etc. LL-OSC exhibits resistance to both solid and liquid abrasions such as sandpaper abrasions, prolonged UV irradiation, DI water and high temperature (30 days), submersion in chemically contaminated aqueous solutions. This is the first report of a hemocompatible solid slippery coating for inhibiting platelet adhesion, thus, paving way for blood-contacting medical device applications. Our LL-OSC exhibits remarkable cytocompatibility, repellence to plasma protein, cells and prevents biofilm formation. Additionally, the substrate independent LL-OSC can be applied onto metals and polymers. We envision that the reported durable, solid slippery coating will find widespread applicability in hospital settings, electronic devices etc.
能够赋予光滑特性的共价且无缺陷的表面接枝固体润滑链已被证明比注入润滑剂和有纹理的抗湿表面更具优势。在此,有机硅烷混合物的共水解和共缩合,随后在界面处进行环氧 - 胺开环反应,产生了一种高度坚固、透明且固体光滑的超疏水涂层(LL - OSC)。环氧封端的有机硅烷的存在:a)在低表面能、刚性氟封端的硅烷之间充当分子间隔物;b)提供“反应性”环氧基团,用于与预官能化的胺表面进行共价结合,以便在液滴传输与操控、诊断等方面具有潜在适用性。LL - OSC表现出对固体和液体磨损的抗性,如砂纸磨损、长时间紫外线照射、去离子水和高温(30天)、浸泡在化学污染的水溶液中。这是关于抑制血小板粘附的血液相容性固体光滑涂层的首次报道,从而为血液接触医疗设备应用铺平了道路。我们的LL - OSC表现出卓越的细胞相容性、对血浆蛋白和细胞的排斥性,并能防止生物膜形成。此外,与基底无关的LL - OSC可以应用于金属和聚合物上。我们设想,所报道的耐用、固体光滑涂层将在医院环境、电子设备等方面得到广泛应用。