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Surface Nanobubbles Studied by Time-Resolved Fluorescence Microscopy Methods Combined with AFM: The Impact of Surface Treatment on Nanobubble Nucleation

机译:时间分辨荧光显微镜方法与原子力显微镜相结合研究表面纳米气泡:表面处理对纳米气泡成核的影响

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The impact of surface treatment and modification on surface nanobubble nucleation in water has been addressed by a new combination of fluorescence lifetime imaging microscopy (FLIM) and atomic force microscopy (AFM). In this study, rhodamine 6G (Rh6G)-labeled surface nanobubbles nucleated by the ethanol-water exchange were studied on differently cleaned borosilicate glass, silanized glass as well as self-assembled monolayers on transparent gold by combined AFM-FLIM. While the AFM data confirmed earlier reports on surface nanobubble nucleation, size, and apparent contact angles in dependence of the underlying substrate, the colocalization of these elevated features with highly fluorescent features observed in confocal intensity images added new information. By analyzing the characteristic contributions to the excited state lifetime of Rh6G in decay curves obtained from time-correlated single photon counting (TCSPC) experiments, the characteristic short-lived (<600 ps) component of could be associated with an emission at the gas-water interface. Its colocalization with nanobubble-like features in the AFM height images provides evidence for the observation of gas-filled surface nanobubbles. While piranha-cleaned glass supported nanobubbles, milder UV-ozone or oxygen plasma treatment afforded glass-water interfaces, where no nanobubbles were observed by combined AFM-FLIM. Finally, the number density of nanobubbles scaled inversely with increasing surface hydrophobicity.
机译:表面处理和改性对水中表面纳米气泡成核的影响已经通过荧光寿命成像显微镜(FLIM)和原子力显微镜(AFM)的新组合解决。在这项研究中,研究了罗丹明6G(Rh6G)标记的乙醇-水交换成核的表面纳米气泡在不同清洁的硼硅酸盐玻璃,硅烷化玻璃以及通过结合AFM-FLIM在透明金上自组装的单层膜上的现象。尽管AFM数据证实了先前有关表面纳米气泡成核,尺寸和视在接触角取决于底层基底的报道,但在共焦强度图像中观察到的这些凸起特征与高度荧光特征的共定位增加了新的信息。通过分析时间相关的单光子计数(TCSPC)实验获得的衰变曲线中Rh6G对激发态寿命的特征贡献,可以将Rh6G的特征短寿命(<600 ps)分量与气体发射相关联。水接口。它与AFM高度图像中的纳米气泡状特征共定位,为观察充满气体的表面纳米气泡提供了证据。用食人鱼清洗的玻璃支撑纳米气泡时,温和的紫外线臭氧或氧气等离子体处理可提供玻璃水界面,但结合使用AFM-FLIM观察不到纳米气泡。最后,纳米气泡的数量密度与表面疏水性的增加成反比。

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