Mohammed Javeed Shaikh, McShane Mike
Institute for Micromanufacturing, Louisiana Tech University, Ruston, Louisiana, USA.
Langmuir. 2008 Dec 2;24(23):13796-803. doi: 10.1021/la802637u.
Fabrication of multicomponent patterned films comprising polymer/nanoparticle multilayers using conventional lithography and bottom-up layer-by-layer nanofabrication techniques is described. The work is motivated by the potential to extend polymer surface micromachining capabilities toward construction of integrated systems by connecting discrete domains of active materials containing functional nanoparticles. Modified surfaces illustrate tunability of the physical (thickness, roughness, 3D structures) and chemical (inorganic/organic material combinations) properties of the nanocomposite micropatterns. Intriguing nanoscale phenomena were observed for the structures when the order of material deposition was changed; the final multilayer thickness and surface roughness and mechanical integrity of the patterns were found to be interdependent and related to the roughness of layers deposited earlier in the process.
本文描述了使用传统光刻技术和自下而上的逐层纳米制造技术制备包含聚合物/纳米颗粒多层膜的多组分图案化薄膜的方法。这项工作的动机在于,通过连接包含功能纳米颗粒的活性材料的离散区域,将聚合物表面微加工能力扩展到集成系统构建的潜力。改性表面展示了纳米复合微图案在物理(厚度、粗糙度、三维结构)和化学(无机/有机材料组合)性质方面的可调性。当材料沉积顺序改变时,观察到了这些结构有趣的纳米级现象;发现最终多层膜的厚度、表面粗糙度以及图案的机械完整性相互依存,并与该过程中较早沉积层的粗糙度有关。