LACUNARITY PROPERTIES OF NANOPHOTONIC MATERIALS BASED ON POLY(METHYL METHACRYLATE) FOR CONTACT LENSES

被引:3
作者
Tomic, Marija [1 ]
Bojovic, Bozica [2 ]
Stamenkovic, Dragomir [3 ]
Mileusnic, Ivana [1 ]
Koruga, Djuro [1 ,4 ]
机构
[1] Univ Belgrade, Fac Mech Engn, Dept Biomed Engn, NanoLab, Kraljice Marije 16, Belgrade 11120, Serbia
[2] Univ Belgrade, Fac Mech Engn, Dept Prod Engn, Kraljice Marije 16, Belgrade 11120, Serbia
[3] Optix LLC, Oracka 13, Belgrade 11070, Serbia
[4] Univ Peace United Nat, Dept Biomed Engn & Nanomed, ECPD, Terazije 41, Belgrade 11000, Serbia
来源
MATERIALI IN TEHNOLOGIJE | 2017年 / 51卷 / 01期
关键词
fullerenes; polymer materials; surface roughness; atomic force microscopy; magnetic force microscopy; TEAR-FILM THICKNESS; IN-VIVO; PRECORNEAL; C-60;
D O I
10.17222/mit.2016.014
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The aim was to develop new materials that would, after appropriate machining processes, improve the surface roughness and wettability of contact lenses. The samples used in this investigation were standard rigid gas-permeable (RGP) SOLEKO contact lenses, made of poly-MMA-co-siloxy silane methacrylate material (known under the commercial name SP40 (TM)), and its modifications by adding three nanomaterials: fullerene C-60 (designated as SP40-A), fullerol C-60(OH)(24) (designated as SP40-B) and methformin hydroxylate fullerene C-60(OH)(12)(OC4N5H10)(12) (designated as SP40-C). Both atomic force microscopy (AFM) and magnetic force microscopy (MFM) were used to measure the topography and gradient of the magnetic field of the nanophotonic materials and the reference samples. According to the magnetic properties of all the materials yielded by MFM it can be concluded that adding fullerene and its derivatives certainly reduces the spectrum of the phase shifts angle by almost 50 %, which increases the paramagnetic characteristics of the nanophotonic material. The positive result of nanophotonic materials characterization is the fact that the roughness parameter values for all of these materials, are lower than those for the basic material. A surface lacunarity analysis, based on in-house procedures for determining the lacunarity value of contact lens surfaces, confirms the influence of surface topology on the tear film volume distribution and, consequently, the contact lens' surface lubrication. The presence of carbon nanomaterials, according to the surface roughness parameters, are improved for rigid gas-permeable (RGP) contact lenses made from nanophotonic polymer materials compared to those produced from the basic material.
引用
收藏
页码:145 / 151
页数:7
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