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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Probing the Hydrophobic interaction between Air Bubbles and Partially Hydrophobic Surfaces Using Atomic Force Microscopy
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Probing the Hydrophobic interaction between Air Bubbles and Partially Hydrophobic Surfaces Using Atomic Force Microscopy

机译:使用原子力显微镜探测气泡与部分疏水表面之间的疏水相互作用

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摘要

The hydrophobic interaction plays an essential role in various natural phenomena and industrial processes. Previous studies on the hydrophobic interaction focused mainly on the interaction between hydrophobic solid surfaces for which the effective range of hydrophobic attraction was reported to vary from ~10 nm to >1 μm. Here, we report studies of the interaction between an air bubble in water used as a probe attached to the cantilever of an atomic force microscope and partially hydrophobized mica surfaces. No bubble attachment was observed for bare hydrophilic mica, but attachment behaviors and attraction with an exponential decay length of 0.8—1.0 nm were observed between the air bubble and partially hydrophobized mica as characterized by a water contact angle on the mica surface that varied from 45° to 85°. Our results demonstrate the important roles of the additional attraction at partially hydrophobized surfaces and hydrodynamic conditions in bubble attachment to substrate surfaces and provide new insights into the basic understanding of this interaction mechanism in various applications such as mineral flotation.
机译:疏水相互作用在各种自然现象和工业过程中起着至关重要的作用。之前对疏水相互作用的研究主要集中在疏水固体表面之间的相互作用上,据报道疏水固体表面之间的疏水吸引作用的有效范围为〜10 nm至> 1μm。在这里,我们报告研究作为原子力显微镜悬臂的探针的水中气泡与部分疏水化的云母表面之间相互作用的研究。对于裸露的亲水性云母,未观察到气泡附着,但在气泡和部分疏水化的云母之间观察到附着行为和指数衰减长度为0.8-1.0 nm的吸附,其特征在于云母表面的水接触角从45变化°至85°。我们的结果证明了在部分疏水化表面上的附加吸引力和气泡附着在基材表面上的流体动力学条件的重要作用,并为在矿物浮选等各种应用中对该相互作用机理的基本理解提供了新见解。

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