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相关概念视频

Controlled-Potential Coulometry: Electrolytic Methods01:17

Controlled-Potential Coulometry: Electrolytic Methods

779
Controlled-potential coulometry, also known as potentiostatic coulometry, employs a three-electrode system in which the working electrode's potential is precisely regulated using a potentiostat. Platinum working electrodes are utilized for positive potentials, while mercury pool electrodes are favored for extremely negative potentials. The platinum counter electrode is separated from the analyte using a membrane or salt bridge to avoid interference in the analysis.
The chosen potential...
779
Controlled-Current Coulometry: Coulometric Titration01:18

Controlled-Current Coulometry: Coulometric Titration

607
Coulometric titrations are a form of titrimetric analysis where the reagent is generated electrically, and its amount is evaluated based on current and generating time. The electron serves as the standard reagent. The procedure is similar to conventional titrations, such as endpoint detection.
The fundamental requirements for coulometric titrations are (1) 100% efficiency in the reagent-generating electrode reaction and (2) a stoichiometric and preferably rapid reaction between the generated...
607
Controlled-Current Coulometry: Overview01:27

Controlled-Current Coulometry: Overview

758
Controlled current coulometry, also known as amperostatic coulometry, is a technique used in electrochemical analysis to measure the quantity of a substance through the controlled passage of current. It involves the application of a constant current to an electrochemical cell containing the analyte of interest. As the current flows through the cell, the analyte undergoes a redox reaction at the electrode surface, resulting in a charge transfer. By monitoring the time required for a certain...
758

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相关实验视频

Updated: Feb 26, 2026

Electrochemical Detection of Deuterium Kinetic Isotope Effect on Extracellular Electron Transport in Shewanella oneidensis MR-1
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电化学控制可以实现高度,单麦克罗拉克顿化.

Siying Mao1, Dengchao Wei1, Kun Xu1

  • 1College of Chemistry and Life Science, Beijing University of Technology Beijing 100124 China kunxu@bjut.edu.cn.

Chemical science
|February 25, 2026
PubMed
概括

这项研究引入了一种电化学巨乳化方法,用于在高度下合成乳. 这种新的方法克服了传统方法的局限性,使得高效的巨乳素形成成为可能.

科学领域:

  • 有机化学 有机化学
  • 电化学 电化学 电化学
  • 合成化学 合成化学

背景情况:

  • 麦克罗拉克的合成传统上需要高稀释,以防止寡合化.
  • 现有的方法面临度限制,阻碍了可扩展性和效率.

研究的目的:

  • 开发一种新型的电化学巨乳化协议.
  • 为了能够在明显高于传统方法的度下合成麦克罗拉克.

主要方法:

  • 使用电化学方法与化物/PPh3双介导系统.
  • 在50mM的高基质度下运行反应.
  • 研究了一种阿西洛キシ索中间体的形成.

主要成果:

  • 成功合成了5至21个成员的乳.
  • 与O-,S-和N-异原子功能的证明兼容性.
  • 在高度下达到高效的巨乳化,抑制寡合化.

结论:

  • 电化学协议提供了一个可扩展和高效的替代方案,用于巨乳素合成.
  • 双调解系统和中间培训是高度成功的关键.

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  • 这种方法扩大了复杂乳结构的合成可能性.