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A method for the direct measurement of surface tension of collectedatmospherically relevant aerosol particles using atomic force microscopy

机译:一种使用原子力显微镜直接测量捕集的主题气溶胶颗粒表面张力的方法

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Accurate estimates of particle surface tension are required for models concerning atmospheric aerosol nucleation and activation. However, it is difficult to collect the volumes of atmospheric aerosol required by typical instruments that measure surface tension, such as goniometers or Wilhelmy plates. In this work, a method that measures, ex situ, the surface tension of collected liquid nanoparticles using atomic force microscopy is presented. A film of particles is collected via impaction and is probed using nanoneedle tips with the atomic force microscope. This micro-Wilhelmy method allows for direct measurements of the surface tension of small amounts of sample. This method was verified using liquids, whose surface tensions were known. Particles of ozone oxidized α-pinene, a well-characterized system, were then produced, collected, and analyzed using this method to demonstrate its applicability for liquid aerosol samples. It was determined that oxidized α-pinene particles formed in dry conditions have a surface tension similar to that of pure α-pinene, and oxidized α-pinene particles formed in more humid conditions have a surface tension that is significantly higher.
机译:关于大气气溶胶成核和活化的模型需要精确估计颗粒表面张力。然而,难以收集测量表面张力的典型仪器所需的大气气溶胶量,例如测量计或威廉砖。在这项工作中,介绍了一种方法,采取了使用原子力显微镜的收集液体纳米粒子的表面张力的方法。通过Impaction收集颗粒膜,并使用具有原子力显微镜的纳尼纹尖端探测。这种微型WiLhelmy方法允许直接测量少量样品的表面张力。使用液体验证该方法,其表面张力已知。然后,使用该方法产生,收集并分析臭氧氧化α-Pine烯的臭氧氧化α-Pine烯,并分析其对液体气溶胶样品的适用性。确定在干燥条件下形成的氧化α-焦烯颗粒具有与纯α-拼烯的表面张力,并且在更潮湿的条件下形成的氧化α-焦烯颗粒具有显着更高的表面张力。

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