度尺度和溶解热力学:关于自发性和分区比率的一些理论和实验观察
Diego J Raposo da Silva1,2, Jéssica I R de Souza1, Ricardo L Longo1
1Departamento de Química Fundamental, Universidade Federal de Pernambuco, Recife 50740-540, PE, Brazil.
Entropy (Basel, Switzerland)
|September 27, 2024
概括
溶解热力学 (ST) 理论,使用量度,准确地预测二甲基胺.
科学领域:
- 物理化学 物理化学
- 热力学是一种热力学.
- 解决方案化学 解决方案化学
背景情况:
- 溶解热力学 (ST) 为溶解提供了一个严格的方法.
- ST将溶解定义为溶解物从理想气体转移到溶液.
- 它通过固定溶解物位置来隔离溶解物与环境的相互作用.
研究的目的:
- 用量度来实验验证ST形式主义.
- 将ST预测与福勒-古根海姆形式主义 (摩尔分数尺度) 进行比较.
- 为了研究二甲基胺在水/六甲甘混合物中的溶解.
主要方法:
- 酸定位 酸定位 酸定位
- 质子核磁共振 (H NMR) 光谱学.
- 对文献数据的分析.
主要成果:
- 实验结果与ST预测的溶解基布斯能量和分区比对齐.
- 乙胺在异质混合物中的溶解行为支持ST形式主义.
- 文献数据进一步证实了实验发现.
结论:
- ST形式主义为理解溶解性质提供了一个一致的框架.
- 度尺度的选择会影响解值属性定义.
- 需要进一步的研究来解决分区比率中的度尺度的任意性.
相关概念视频
Solubility Equilibria: Overview
617
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...
Solubility is important in biological and environmental processes. A notable...
617
Entropy and Solvation
7.0K
The process of surrounding a solute with solvent is called solvation. It involves evenly distributing the solute within the solvent. The rule of thumb for determining a solvent for a given compound is that like dissolves like. A good solvent has molecular characteristics similar to those of the compound to be dissolved. For example, polar solutions dissolve polar solutes, and apolar solvents dissolve apolar solutes. A polar solvent is a solvent that has a high dielectric constant (ϵ...
7.0K
Chemical and Solubility Equilibria
4.1K
The free energy change associated with dissolving a solute in a liter of solvent is called the free energy of a solution, ΔGsolution. The overall ΔGsolution is expressed as the balance of ΔGinteraction against the always-favorable free-energy of mixing, ΔGmixing. Solution formation is favorable if ΔGsolution is less than zero, whereas it is unfavorable if ΔGsolution is greater than zero. In short, for a solution to form and complete dissolution to take place,...
4.1K
Solubility Equilibria
52.4K
Solubility equilibria are established when the dissolution and precipitation of a solute species occur at equal rates. These equilibria underlie many natural and technological processes, ranging from tooth decay to water purification. An understanding of the factors affecting compound solubility is, therefore, essential to the effective management of these processes. This section applies previously introduced equilibrium concepts and tools to systems involving dissolution and precipitation.
The...
The...
52.4K
Expressing Solution Concentration
58.4K
A solute is a component of a solution that is typically present at a much lower concentration than the solvent. Solute concentrations are often described with qualitative terms such as dilute (of relatively low concentration) and concentrated (of relatively high concentration).
Concentrations may be quantitatively assessed using a wide variety of measurement units, each convenient for particular applications. Molarity (M) is a useful concentration unit for many applications in chemistry.
Concentrations may be quantitatively assessed using a wide variety of measurement units, each convenient for particular applications. Molarity (M) is a useful concentration unit for many applications in chemistry.
58.4K
Energetics of Solution Formation
6.7K
The formation of a solution is an example of a spontaneous process, which is 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. Formation of the solution requires the solute–solute and solvent–solvent...
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. Formation of the solution requires the solute–solute and solvent–solvent...
6.7K


