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相关概念视频

Balancing Redox Equations02:58

Balancing Redox Equations

52.6K
Electrochemistry is the science involved in the interconversion of electrical and chemical reactions. Such reactions are called reduction-oxidation, or redox reactions. These important reactions are defined by changes in oxidation states for one or more reactant elements and include a subset of reactions involving the transfer of electrons between reactant species. Electrochemistry as a field has evolved to yield sufficient insights on the fundamental principles of redox chemistry and multiple...
52.6K
Redox Equilibria: Overview01:23

Redox Equilibria: Overview

587
A reduction-oxidation reaction is commonly called a redox reaction. In a redox reaction, electrons are transferred from one species to another rather than being shared between or among atoms. The reducing agent or reductant is the species that loses electrons and gets oxidized in the process. The species that gains electrons and gets reduced in the process is the oxidizing agent or oxidant. Redox reactions are represented as two separate equations called half-reactions, where one equation...
587
Redox Reactions01:27

Redox Reactions

39
Redox reactions are vital biochemical processes that underpin energy metabolism in cells. These reactions involve the transfer of electrons between molecules, occurring in tandem as oxidation and reduction. Oxidation refers to the loss of electrons, while reduction denotes their gain. This coupling ensures the seamless flow of electrons through metabolic pathways. For example, in bacterial metabolism, glucose undergoes oxidation to carbon dioxide, while oxygen is simultaneously reduced to...
39
Acids, Bases and Neutralization Reactions03:26

Acids, Bases and Neutralization Reactions

54.9K
An acid-base reaction is one in which a hydrogen ion, H+, is transferred from one chemical species to another. Such reactions are of central importance to numerous natural and technological processes, ranging from the chemical transformations within cells or lakes and oceans to the industrial-scale production of fertilizers, pharmaceuticals, and other substances essential to the society.
54.9K
Electron Transport Chain: Complex III and IV01:43

Electron Transport Chain: Complex III and IV

7.6K
During the electron transport chain, electrons from NADH and FADH2 are first transferred to complexes I and II, respectively. These two complexes then transfer the electrons to ubiquinol, which carries them further to complex III. Complex III passes the electrons across the intermembrane space to Cyt c, which carries them further to complex IV. Complex IV donates electrons to oxygen and reduces it to water. As electrons pass through complexes I, III, and IV, the energy released aids the pumping...
7.6K
Ladder Diagrams: Redox Equilibria01:30

Ladder Diagrams: Redox Equilibria

479
Ladder diagrams are useful tools for understanding redox equilibrium reactions, especially the effects of concentration changes on the electrochemical potential of the reaction. The vertical axis in the redox ladder diagrams represents the electrochemical potential, E. The area of predominance is demarcated using the Nernst equation.
Consider the Fe3+/Fe2+ half-reaction, which has a standard-state potential of +0.771 V. At potentials more positive than +0.771 V, Fe3+ predominates, whereas Fe2+...
479

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Electrochemical Detection of Deuterium Kinetic Isotope Effect on Extracellular Electron Transport in Shewanella oneidensis MR-1
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Electrochemical Detection of Deuterium Kinetic Isotope Effect on Extracellular Electron Transport in Shewanella oneidensis MR-1

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双功能近中性电解质增强氧的进化反应反应.

Kaiyue Zhao1, Yu Tao1, Linke Fu1

  • 1College of Chemistry and Molecular Engineering, Peking University, Beijing, 100871, China.

Angewandte Chemie (International ed. in English)
|August 21, 2023
PubMed
概括

混合酸/化电解质中的BF2(OH) 2 - 离子显著增加氧化演化反应 (OER) 速率. 这种电解质工程方法提高了接近中性pH的催化剂性能.

科学领域:

  • 电化学 电化学 电化学
  • 材料科学 材料科学 材料科学
  • 催化剂是一种催化剂.

背景情况:

  • 电催化反应的性能受活性部位特征和当地的电解质环境的影响.
  • 优化氧进化反应 (OER) 对能量转化技术至关重要.

研究的目的:

  • 确定在混合KBi/KF电解质中增强OER的关键酸物种.
  • 阐明这种电解质在近中性pH下促进OER的机制.

主要方法:

  • 电化学动力学研究研究.
  • 在现场进行光谱学调查.
  • 电解质分析 电解质分析

主要成果:

  • BF2 ((OH) 2-离子被确定为OER增强的关键物种.
  • 混合KBi/KF电解质稳定了界面pH值,并通过键激活了界面水.
  • 在1.74V的电压下,用优化的电解质实现了100mA/cm2的电子沉积Co.

结论:

  • BF2(OH) 2 - 离子在促进OER活动中起着至关重要的作用.
  • 电解质工程,特别是使用混合KBi/KF,是提高OER性能的一个有希望的策略.
关键词:
缓冲能力的缓冲能力酸的物种 酸的物种接口水 接口水 接口水接近中立的 接近中立的氧的进化反应反应 氧的进化反应

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  • 这种方法在近乎中性的条件下提供高活性与地球丰富的催化剂.