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相关概念视频

Solvating Effects02:12

Solvating Effects

7.4K
An understanding of the solvating effect helps rationalize the relation between solvation and acidity of the compound. In addition, this also explains the relative stability of conjugate bases for compounds with different pKa values. This lesson details, in-depth, the principle of solvating effects. The strength of an acid and the stability of its corresponding conjugate base are determined using pKa values. This observed relationship is a consequence of solvation, which is the interaction...
7.4K
Ionic Strength: Effects on Chemical Equilibria01:19

Ionic Strength: Effects on Chemical Equilibria

1.4K
The addition of an inert ionic compound increases the solubility of a sparingly soluble salt. For example, adding potassium nitrate to a saturated solution of calcium sulfate significantly enhances the solubility of calcium sulfate. Le Châtelier's principle cannot predict this shift in the equilibrium. Instead, this could be explained in terms of changes in the effective concentration of the ions in solution in the presence of added inert salt.
In this solution, the primary...
1.4K
Intermolecular Forces in Solutions02:28

Intermolecular Forces in Solutions

33.2K
The formation of a solution is an example of a spontaneous process, a process that occurs under specified conditions without energy from some external source.
When the strengths of the intermolecular forces of attraction between solute and solvent species in a solution are no different than those present in the separated components, the solution is formed with no accompanying energy change. Such a solution is called an ideal solution. A mixture of ideal gases (or gases such as helium and argon,...
33.2K
Solubility Equilibria: Overview01:09

Solubility Equilibria: Overview

612
When a substance such as sodium chloride is added to water, it dissolves, forming an aqueous solution. The extent of dissolution is called solubility. The process of dissolution can exist in equilibrium, just like other chemical processes. Solubility equilibria are also called precipitation equilibria because the process of solubility can be reversible. The reverse of the solubility process is called precipitation.
Solubility is important in biological and environmental processes. A notable...
612
Aqueous Solutions and Heats of Hydration02:42

Aqueous Solutions and Heats of Hydration

14.6K
Water and other polar molecules are attracted to ions. The electrostatic attraction between an ion and a molecule with a dipole is called an ion-dipole attraction. These attractions play an important role in the dissolution of ionic compounds in water.
When ionic compounds dissolve in water, the ions in the solid separate and disperse uniformly throughout the solution because water molecules surround and solvate the ions, reducing the strong electrostatic forces between them. This process...
14.6K
Solvents01:12

Solvents

64.4K
A solvent is a substance, most often a liquid, that can dissolve other substances. Here, the substance being dissolved is called a solute. When a solvent and a solute combine, they form a solution - a homogenous mixture of both the solvent and the solute. Water is a universal biological solvent. Its polar structure allows it to dissolve many other polar compounds. The ability of water to dissolve is governed by a balance between water molecules binding to each other and binding to the solute.
A...
64.4K

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相关实验视频

Updated: Jun 11, 2025

A Micro-agar Salt Bridge Electrode for Analyzing the Proton Turnover Rate of Recombinant Membrane Proteins
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A Micro-agar Salt Bridge Electrode for Analyzing the Proton Turnover Rate of Recombinant Membrane Proteins

Published on: January 7, 2019

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增强溶解的盐桥

Ben Iddon1, Christopher A Hunter1

  • 1Yusuf Hamied Department of Chemistry, University of Cambridge, Lensfield Road, Cambridge CB2 1EW, U.K.

Journal of the American Chemical Society
|October 4, 2024
PubMed
概括

氨基酸-碳酸盐桥是关键的非共价相互作用. 它们的稳定性在很大程度上取决于溶剂极性和分子结构,对设计超分子系统有影响.

科学领域:

  • 超分子化学
  • 化学物理
  • 生物分子相互作用

背景情况:

  • 由氨基酸和碳酸形成的盐桥是生物和超分子化学中的关键非对应相互作用.
  • 了解影响盐桥稳定的因素对于设计功能分子系统至关重要.

研究的目的:

  • 研究盐桥强度,分子结构和溶剂环境之间的关系.
  • 阐明质子转移和溶解在盐桥稳定的作用.
  • 为各种溶剂中运行的超分子组件的合理设计提供洞察力.

主要方法:

  • 异热定位热量计 (ITC) 用于量化相互作用强度.
  • 胺基和碳酸酸度的系统变化.
  • 使用各种极性和非极性溶剂.
  • 密度函数理论 (DFT) 计算用于H键参数分析.

主要成果:

  • 盐桥稳定性根据胺基和酸酸度变化两个数量级,与质子转移相关.
  • 极性溶剂显著降低了与N,N'-二甲基胺基的盐桥的稳定性,但这种效应在原始胺基中被减弱.
  • 由于可极化NH位点的有利溶解,胺复合物表现出增强的稳定性.
  • DFT计算准确地预测了溶剂对盐桥稳定性的影响.

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Controlling the Size, Shape and Stability of Supramolecular Polymers in Water
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Controlling the Size, Shape and Stability of Supramolecular Polymers in Water

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From Molecules to Materials: Engineering New Ionic Liquid Crystals Through Halogen Bonding
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From Molecules to Materials: Engineering New Ionic Liquid Crystals Through Halogen Bonding

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A Micro-agar Salt Bridge Electrode for Analyzing the Proton Turnover Rate of Recombinant Membrane Proteins
08:09

A Micro-agar Salt Bridge Electrode for Analyzing the Proton Turnover Rate of Recombinant Membrane Proteins

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Controlling the Size, Shape and Stability of Supramolecular Polymers in Water
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Controlling the Size, Shape and Stability of Supramolecular Polymers in Water

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From Molecules to Materials: Engineering New Ionic Liquid Crystals Through Halogen Bonding
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From Molecules to Materials: Engineering New Ionic Liquid Crystals Through Halogen Bonding

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  • 碳酸盐桥梁在极性和非极性近极性溶剂中表现出稳定性.
  • 结论:

    • 盐桥稳定性对相互作用分子和周围溶剂的内在特性都非常敏感.
    • 结构修改,例如用质子取代基,可以大大改变溶剂依赖性.
    • 碳酸盐桥梁在各种近离子溶剂中提供强大的稳定性,使其成为超分子化学应用的前景.