Sun Yujie, Walker Gilbert C
Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.
Langmuir. 2005 Sep 13;21(19):8694-702. doi: 10.1021/la050448j.
As follow-up to a previous study,(1) the viscoelastic response of cross-linked poly(dimethylsiloxane) (PDMS) in the adhesive interaction with AFM tips is reported. The indentation of the AFM tip into the polymer caused by adhesion is monotonically dependent on the loading speed. During the unloading process, the adherence force between the AFM tip and the polymer has a turning point at a specific unloading speed. It is found that the viscoelastic relaxation processes in the bulk polymer, which may have more than one component, cause the monotonic rate dependence of the adhesion-induced indentation; the competition between the bulk relaxation and the interfacial relaxation results in the turning point of the adherence force at a specific ramp speed. Experiments at different dwell times provide additional evidence for the existence of material relaxation. Methyl- and hydroxyl-functionalized AFM tips were used to study PDMS samples and indicated strong dipolar attractions formed at the tip-sample interface.
作为先前一项研究的后续,(1)本文报道了交联聚二甲基硅氧烷(PDMS)在与原子力显微镜(AFM)探针的粘附相互作用中的粘弹性响应。由粘附引起的AFM探针压入聚合物的深度单调依赖于加载速度。在卸载过程中,AFM探针与聚合物之间的粘附力在特定卸载速度下有一个转折点。研究发现,本体聚合物中的粘弹性弛豫过程可能有多个组分,这导致了粘附诱导压痕的单调速率依赖性;本体弛豫和界面弛豫之间的竞争导致了在特定斜坡速度下粘附力的转折点。在不同停留时间的实验为材料弛豫的存在提供了额外的证据。使用甲基和羟基功能化的AFM探针研究PDMS样品,表明在探针 - 样品界面形成了强偶极吸引力。