Science. 1993 Oct 29;262(5134):719-21. doi: 10.1126/science.262.5134.719.
The formation of high-quality thin films of polytetrafluoroethylene (PTFE) is important in many applications ranging from material reinforcement to molecular electronics. Laser ablation, a technique widely used to deposit a variety of inorganic materials, can also be used as a simple and highly versatile method for forming thin polymer films. The data presented show that PTFE films can be produced on various supports by the evaporation of a solid PTFE target with a pulsed ultraviolet laser. The composition of the ablation plume suggests that PTFE ablation and subsequent film formation occur by way of a laser-induced pyrolitic decomposition with subsequent repolymerization. The polymer films produced by this method are composed of amorphous and highly crystalline regions, the latter being predominantly in a chain-folded configuration with the molecular axis aligned parallel to the substrate surface.
聚四氟乙烯(PTFE)高质量薄膜的形成在从材料增强到分子电子学等众多应用中都非常重要。激光烧蚀是一种广泛用于沉积各种无机材料的技术,也可以作为一种简单而用途广泛的形成聚合物薄膜的方法。所提供的数据表明,通过脉冲紫外激光蒸发固态 PTFE 靶材可以在各种基底上生成 PTFE 薄膜。烧蚀羽流的组成表明,PTFE 的烧蚀和随后的薄膜形成是通过激光诱导的热解作用进行的,随后是再聚合。通过这种方法制备的聚合物薄膜由无定形和高结晶区域组成,后者主要以链折叠构型存在,分子轴与基底表面平行排列。