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Understanding and controlling the depth sensitivity of scanning probe based infrared imaging and nanospectroscopy for buried polymeric structures

机译:了解和控制基于扫描探针的红外成像和纳米光谱对埋藏聚合物结构的深度灵敏度

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摘要

Atomic force microscopy paired with infrared spectroscopy (AFM-IR) is a robust technique for investigating complex polymer blends and composites’ nanoscale surface topography and chemical composition. In this work, we measured bilayer polymer films to study the effect of laser power, laser pulse frequency, and laser pulse width on the depth sensitivity of the technique. Unique bilayer polystyrene (PS) and polylactic acid (PLA) samples with various film thicknesses and blend ratios were prepared. The depth sensitivity characterized by the amplitude ratio of the resonance bands of PLA and PS was monitored as the thickness of the top barrier layer was incrementally increased from tens of nanometers to hundreds of nanometers. In addition, incrementally increasing the incident laser power resulted in greater depth sensitivity due to the enhanced thermal oscillations generated in the buried layer. In contrast, incrementally increasing the laser frequency increased the surface sensitivity, as indicated by a reduced PLA/PS AFM-IR signal ratio. Finally, the dependence of the depth sensitivity on the laser pulse width was observed. Consequently, by precisely controlling the laser energy, pulse frequency, and pulse width, one can finely control the depth sensitivity of the AFM-IR tool from 10 nm to 100 nm. Our work provides the unique capability to study buried polymeric structures without the need for tomography or destructive etching.
机译:原子力显微镜配合红外线光谱学(AFM-IR)是一个健壮的技术调查复杂的聚合物混合和复合材料的纳米表面形貌和化学成分。双分子层聚合物薄膜研究的影响激光功率、激光脉冲频率和激光脉冲宽度的深度敏感性技术。聚乳酸(PLA)和样品不同的电影制备了厚度和混合比率。深度敏感性表现为振幅比解放军和PS的共振乐队监控厚度最大的障碍从数万层逐步增加纳米到几百纳米。此外,逐步增加事件激光功率导致更大的深度敏感性由于增强热振荡埋层的生成。逐步增加激光频率增加了表面灵敏度,如表示PLA / PS AFM-IR信号比值降低。上的深度敏感性的依赖激光脉冲宽度。精确地控制激光能量,脉冲频率和脉冲宽度,可以精细控制的深度敏感性AFM-IR工具从10到100 nm。研究埋聚合物的独特能力不需要断层或结构破坏性的腐蚀。

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