IBM Almaden Research Center , San Jose, California 95120, United States.
ACS Appl Mater Interfaces. 2013 Nov 13;5(21):11276-80. doi: 10.1021/am403506k. Epub 2013 Oct 22.
Transparent polymers are widely used in many applications ranging from automotive windows to microelectronics packaging. However, their intrinsic characteristics, in particular their mechanical properties, are significantly degraded with exposure to different weather conditions. For instance, under humid environment or UV-irradiation, polycarbonate (PC) undergoes depolymerization, leading to the release of Bisphenol A, a molecule presumed to be a hormonal disruptor, potentially causing health problems. This is a serious concern and the new REACH (Registration, Evaluation, Authorization and Restriction of Chemical substances ) program dictates that materials releasing Bisphenol A should be removed from the market by January 1st, 2015 (2012-1442 law). Manufacturers have tried to satisfy this new regulation by depositing atop the PC a dense oxide-like protective coating that would act as a barrier layer. While high hardness, modulus, and density can be achieved by this approach, these coatings suffer from poor adhesion to the PC as evidenced by the numerous delamination events occurring under low scratch constraints. Here, we show that the combination of a N2/H2-plasma treatment of PC before depositing a hybrid organic-inorganic solution leads to a coating displaying elevated hardness, modulus, and density, along with a very high adherence to PC (> 20 J/m(2) as measured by double cantilever beam test). In this study, the sol-gel coatings were composed of hybrid O/I silica (based on organoalkoxysilanes and colloidal silica) and designed to favor covalent bonding between the hybrid network and the surface treated PC, hence increasing the contribution of the plastic deformation from the substrate. Interestingly, double-cantilever beam (DCB) tests showed that the coating's adhesion to PC was the same irrespective of the organoalkoxysilanes/colloidal silica ratio. The versatility of the sol-gel deposition techniques (dip-coating, spray-coating, etc.), together with the excellent mechanical properties and exceptional adherence of this hybrid material to PC should lead to interesting new applications in diverse fields: optical eye-glasses, medical materials, packaging, and so forth.
透明聚合物广泛应用于从汽车车窗到微电子封装等多种领域。然而,它们的固有特性,尤其是机械性能,在暴露于不同的天气条件下会显著降低。例如,在潮湿的环境或紫外线照射下,聚碳酸酯(PC)会发生解聚,导致双酚 A 的释放,双酚 A 被认为是一种激素干扰物,可能会导致健康问题。这是一个严重的问题,新的 REACH(注册、评估、授权和限制化学物质)计划规定,释放双酚 A 的材料应在 2015 年 1 月 1 日(2012-1442 年法律)之前从市场上撤出。制造商试图通过在 PC 上沉积一层致密的氧化物状保护层来满足这一新规定,该保护层将作为阻挡层。虽然这种方法可以实现高硬度、模量和密度,但这些涂层与 PC 的附着力很差,这可以从在低划痕约束下发生的许多分层事件中得到证明。在这里,我们表明,在沉积混合有机-无机溶液之前,先用 N2/H2 等离子体处理 PC,可得到一种涂层,其硬度、模量和密度均有所提高,与 PC 的附着力也非常高(通过双悬臂梁测试测量,超过 20 J/m2)。在这项研究中,溶胶-凝胶涂层由混合 O/I 二氧化硅(基于有机烷氧基硅烷和胶体二氧化硅)组成,旨在促进混合网络与经表面处理的 PC 之间的共价键合,从而增加来自基底的塑性变形的贡献。有趣的是,双悬臂梁(DCB)测试表明,无论有机烷氧基硅烷/胶体二氧化硅的比例如何,涂层对 PC 的附着力都是相同的。溶胶-凝胶沉积技术(浸涂、喷涂等)的多功能性,以及这种混合材料对 PC 的优异机械性能和卓越附着力,应该会在光学眼镜、医疗材料、包装等各个领域带来有趣的新应用。