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相关概念视频

Contact Angle01:13

Contact Angle

11.5K
When a solid is dipped inside a liquid, the liquid surface becomes curved near the contact. For some solid–liquid interfaces, the liquid is pulled up along the solid, while for others, the liquid surface is convex or depressed near the solid surface. This phenomenon can be explained using the concept of cohesive and adhesive forces.
The adhesive force is the molecular force between molecules of different materials, that is, between the molecules of the solid and the liquid. The cohesive...
11.5K
Surface Tension, Capillary Action, and Viscosity02:57

Surface Tension, Capillary Action, and Viscosity

27.3K
Surface Tension
The various IMFs between identical molecules of a substance are examples of cohesive forces. The molecules within a liquid are surrounded by other molecules and are attracted equally in all directions by the cohesive forces within the liquid. However, the molecules on the surface of a liquid are attracted only by about one-half as many molecules. Because of the unbalanced molecular attractions on the surface molecules, liquids contract to form a shape that minimizes the number...
27.3K
Surface Tension and Surface Energy01:16

Surface Tension and Surface Energy

1.3K
When a paint brush is immersed in water, the bristles wave freely inside the water. When it is taken out, the bristles stick together. The reason behind this effect is surface tension.
Consider a beaker filled with liquid. The bulk molecules in the liquid experience equal attractive forces on all sides with the surrounding molecules. However, the surface molecules experience a net attractive force downward due to the bulk molecules. The surface of the liquid behaves like a stretched membrane,...
1.3K

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相关实验视频

Updated: May 16, 2025

Surface Properties of Synthesized Nanoporous Carbon and Silica Matrices
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Surface Properties of Synthesized Nanoporous Carbon and Silica Matrices

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测量高接触角的测量方法

Auriane Huyghues Despointes1, Alice Mougey1, David Quéré1

  • 1Physique et Mécanique des Milieux Hétérogènes, UMR 7636 du CNRS, PSL Research University, ESPCI, Paris, France.

Soft matter
|April 4, 2025
PubMed
概括

确定高水接触角度 (θ > 150°) 是一个挑战. 一种测量已知体积下降基尺寸的新方法精确地确定了这些角度,提高了液体大理石和热固体的精度.

科学领域:

  • 表面科学是一门学科.
  • 材料科学 材料科学 材料科学
  • 物理 物理学 物理

背景情况:

  • 防水性在许多应用中至关重要.
  • 高接触角度 (θ > 150°) 定义了超性.
  • 现有的测量高接触角的方法由于诸如重力等因素而缺乏精度.

研究的目的:

  • 开发一种精确的方法来确定高接触角度.
  • 为了克服传统侧视下降分析的局限性.
  • 为了验证新方法在具有挑战性的表面,如液体大理石和热固体.

主要方法:

  • 测量已知体积的液滴的底径.
  • 使用几何计算来推导接触角.
  • 将该方法应用于各种表面上的水滴,包括液体大理石和热固体.

主要成果:

  • 新方法以大约1°的精度确定高接触角度.
  • 这与~10°不确定性的传统方法相比是显著的改进.
  • 准确的接触角得到了液体大理石和热固体上的水.

结论:

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Pore-scale Imaging and Characterization of Hydrocarbon Reservoir Rock Wettability at Subsurface Conditions Using X-ray Microtomography
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Pore-scale Imaging and Characterization of Hydrocarbon Reservoir Rock Wettability at Subsurface Conditions Using X-ray Microtomography

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相关实验视频

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Surface Properties of Synthesized Nanoporous Carbon and Silica Matrices

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Fabricating Superhydrophobic Polymeric Materials for Biomedical Applications
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Pore-scale Imaging and Characterization of Hydrocarbon Reservoir Rock Wettability at Subsurface Conditions Using X-ray Microtomography
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Pore-scale Imaging and Characterization of Hydrocarbon Reservoir Rock Wettability at Subsurface Conditions Using X-ray Microtomography

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  • 测量滴底尺寸为量化排水能力提供了一个非常准确的技术.
  • 这种方法为研究超疏水表面提供了可靠的工具.
  • 这些发现有助于更好地理解和描述湿现象.