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相关概念视频

The Supercomplexes in the Crista Membrane01:41

The Supercomplexes in the Crista Membrane

The mitochondrial cristae membrane is the primary site for the oxidative phosphorylation (OXPHOS) process of energy conversion mediated through respiratory complexes I to V. These complexes have been widely studied for decades, and it has been proven that they form supramolecular structures called respiratory supercomplexes (SC). These higher-order complexes may be crucial in maintaining the biochemical structure and improving the physiological activity of the individual complexes while...
Mechanisms of Membrane Domain Formation00:59

Mechanisms of Membrane Domain Formation

Different physical properties of lipids and proteins allow them to localize and form distinct islands or domains in the membrane. Some membrane domains are formed due to protein-protein interactions, whereas others are formed due to the presence of specific lipids such as sphingolipids and sterols—for example, large proteins, such as bacteriorhodopsin, aggregate and create distinct domains.
Another mechanism for membrane domain formation involves membrane proteins interacting with cytoskeletal...
Structure of Porins01:21

Structure of Porins

Mitochondria, chloroplasts, and gram-negative bacteria have transmembrane, beta-barrel proteins called porins to mediate the free diffusion of ions and metabolites across the membrane. Mitochondrial porin precursors contain conserved amino acid sequences called beta signals at their C-terminal. Beta signals have a  motif of PoXGXXHyXHy (Po-Polar, X-Any amino acid, G-Glycine, Hy-LargeHydrophobic), which are crucial for precursor recognition to initiate precursor assembly. Beta-barrel precursors...
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Tight junctions are molecular seals between cells that prevent the leaking of fluids, ions, and other small solutes across cavities and compartments in multicellular organisms. They are mainly composed of claudin and occludin transmembrane proteins, and other proteins such as tricellulin and JAM (junctional adhesion molecule). All these proteins are 4-pass transmembrane proteins, except JAM, which is a single-pass transmembrane protein belonging to the immunoglobulin superfamily. The...
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Imperfections in Crystal Structure: Stoichiometric Point Defects

Schottky defects arise when some lattice points in a crystal, such as those in NaCl, remain unoccupied, creating lattice vacancies without disturbing the overall electrical neutrality of the crystal. This defect is common in ionic crystals where the positive and negative ions are similar in size, as seen in sodium chloride and cesium chloride. The presence of Schottky defects enables the crystal to conduct electricity to a small extent through an ionic mechanism. Electric fields cause nearby...

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通过单细胞界面封闭组件构建独特的中等孔碳超结构

Zaiwang Zhao1, Linlin Duan1, Yujuan Zhao2

  • 1Department of Chemistry, Laboratory of Advanced Materials, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, iChEM and State Key Laboratory of Molecular Engineering of Polymers, College of Chemistry and Materials, Fudan University, Shanghai 200433, P. R. China.

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概括

研究人员使用单细胞接口组件开发了一种新的3D半孔N-化碳超结构. 这种材料具有很大的表面积和优异的氧降解反应 (ORR) 性能.

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科学领域:

  • 材料科学
  • 纳米技术
  • 电化学

背景情况:

  • 具有可控孔隙性和功能性的层次式3D半结构难以合成.
  • 现有的材料往往缺乏足够的表面积和相互连接的孔隙网络.

研究的目的:

  • 开发一种具有可调节性质的新型3D半孔碳上层结构.
  • 探索其作为一种先进的电催化材料的潜力.

主要方法:

  • 一个单细胞接口的封闭组合方法.
  • 具有中心空洞和球形半孔的层次结构的制造.
  • 孔隙结构,表面积和形态的特征.

主要成果:

  • 实现了前所未有的3D半孔碳超结构与相互连接的孔.
  • 展示的超高可访问面积 (685 m2 g-1).
  • 证明可控制的中孔数量,颗粒大小和外厚度.
  • 获得了其他配置,如3D空心纳米片和2D纳米片.

结论:

  • 开发的上层结构显示为氧降解反应 (ORR) 的先进电催化剂.
  • 达到0.82V的半波电位 (与RHE相比),相当于商业Pt/C.
  • 对于ORR来说,它具有显著的耐用性,突出了其在能源应用中的潜力.