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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Visualizing Nanoscopic Topography and Patterns in Freely Standing Thin Films.
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APS -APS March Meeting 2017 - Event - Visualizing Nanoscopic Topography and Patterns in Freely Standing Thin Films.

机译:APS -APS 2017年3月会议-事件-可视化自由站立的薄膜中的纳米形貌和图案。

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摘要

Thin liquid films containing micelles, nanoparticles, polyelectrolyte-surfactant complexes and smectic liquid crystals undergo thinning in a discontinuous, step-wise fashion. The discontinuous jumps in thickness are often characterized by quantifying changes in the intensity of reflected monochromatic light, modulated by thin film interference from a region of interest. Stratifying thin films exhibit a mosaic pattern in reflected white light microscopy, attributed to the coexistence of domains with various thicknesses, separated by steps. Using Interferometry Digital Imaging Optical Microscopy (IDIOM) protocols developed in the course of this study, we spatially resolve for the first time, the landscape of stratifying freestanding thin films. In particular, for thin films containing micelles of sodium dodecyl sulfate (SDS), discontinuous, thickness transitions with concentration-dependent steps of 5-25 nm are visualized and analyzed using IDIOM~protocols. We distinguish~nanoscopic rims, mesas and craters and show that the~non-flat features are sculpted by oscillatory, periodic, supramolecular structural forces that arise in confined fluids
机译:包含胶束,纳米颗粒,聚电解质表面活性剂复合物和近晶型液晶的薄膜以不连续的逐步方式变薄。厚度的不连续跳变通常以量化反射的单色光强度的变化为特征,该反射光受来自感兴趣区域的薄膜干扰的调制。层状薄膜在反射白光显微镜下显示出马赛克图案,这归因于不同厚度的区域并存,这些区域被台阶隔开。使用在研究过程中开发的干涉测量数字成像光学显微镜(IDIOM)协议,我们首次在空间上解析了分层的独立薄膜的状况。特别是,对于包含十二烷基硫酸钠(SDS)胶束的薄膜,使用IDIOM协议可视化并分析了浓度依赖性5-25 nm的不连续厚度跃迁。我们区分了纳米镜的边缘,台面和火山口,并表明,非平坦特征是由受限流体中产生的振荡,周期性,超分子结构力雕刻而成的

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