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相关概念视频

Breathing01:05

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The process of breathing, inhaling and exhaling, involves the coordinated movement of the chest wall, the lungs, and the muscles that move them. Two muscle groups with important roles in breathing are the diaphragm, located directly below the lungs, and the intercostal muscles, which lie between the ribs. When the diaphragm contracts, it moves downward, increasing the volume of the thoracic cavity and creating more room for the lungs to expand. When the intercostal muscles contract, the ribs...
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Children at play often make suspensions such as mixtures of mud and water, flour and water, or a suspension of solid pigments in water known as tempera paint. These suspensions are heterogeneous mixtures composed of relatively large particles visible to the naked eye or seen with a magnifying glass. They are cloudy, and the suspended particles settle out after mixing. The suspended particles in a suspension settle out after some time of mixing. The separation of particles from a suspension is...
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External respiration occurs in the lungs, and it is the first step in the journey of oxygen inside the body. When we inhale, oxygen enters our lungs and diffuses across the thin alveolar membrane. The alveoli are tiny, air-filled sacs that provide a vast surface area for gas exchange. Oxygen in the alveoli has a higher partial pressure (105 mmHg) than in the adjacent pulmonary capillaries (40 mmHg), establishing a pressure gradient. As a result, oxygen molecules move from the alveoli into the...
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The high insolubility of some precipitates can result in an unfavorable relative supersaturation. This can lead to colloidal particles with a large surface-to-mass ratio, where adsorption is promoted. For instance, in the precipitation of silver chloride, silver ions are adsorbed on the surface of the colloidal particles, forming a primary layer. This layer attracts ions of opposite charge (such as nitrate ions), forming a diffuse secondary layer of adsorbed ions. This electric double layer...
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A Microfluidic Model of Biomimetically Breathing Pulmonary Acinar Airways
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呼吸型合体单层

Barry Chi Hong Lai1, Dengping Lyu1, Matthew Chan1

  • 1Department of Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong 999077, China.

Journal of the American Chemical Society
|July 19, 2025
PubMed
概括
此摘要是机器生成的。

研究人员开发了可以逆向扩张和收缩,在多孔结构之间转换的二维体超级网格. 这种"呼吸"行为为设计可重构,响应性强的材料提供了新的策略.

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科学领域:

  • 材料科学
  • 体科学
  • 晶体学

背景情况:

  • 在可重构材料的分子晶体中,可逆的多态转换是关键.
  • 由于粒子尺度和相互作用,将这些过渡转化为合超级网带来了独特的挑战.

研究的目的:

  • 设计具有可逆异型膨胀和收缩 ("呼吸") 的二维体超级网格.
  • 在体组件中实现可调节的多孔性和结构重构.

主要方法:

  • 使用耗尽和交流电场相互作用组装多面体粒子 (截断的六角双金字塔形状).
  • 使用面重叠和双极对齐来形成超级网格.
  • 研究结构重构动力学和对刺激反应的切换.

主要成果:

  • 在具有开放和关闭间隔孔的体超级晶格多态体之间证明了可逆转变.
  • 实现了各种可调节的轴角和多孔性的形超级网格的形成.
  • 观察到快速和可逆的切换,表现出响应刺激的'呼吸'行为.

结论:

  • 通过"呼吸"超级网来制造响应性的仿生体材料.
  • 这些发现为设计具有可调节性质的可重新配置的体系统开辟了道路.
  • 突出了工程粒子形状和交互在体自组合中的潜力.