相关实验视频
Updated: Jul 19, 2026

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Calcium Carbonate Formation in the Presence of Biopolymeric Additives
Published on: May 14, 2019
1,4-二碳酸与石表面的方向特定相互作用
H Henry Teng1, Yang Chen, Elli Pauli
1Department of Chemistry, George Washington University, Washington, D.C. 20052, USA. hteng@gwu.edu
Journal of the American Chemical Society
|November 9, 2006
概括
酸 (SUC) 改变了石水晶蚀刻坑的形状,从形转变为六角形,然后转变为五面坑. 这是由于SUC选择性地与特定的晶体边缘结合,从而影响生长模式.
科学领域:
- 地质化学 地质化学
- 材料科学 材料科学 材料科学
- 晶体学 晶体学是指结晶学.
背景情况:
- 石 (碳酸) 是一种无处不在的矿物质,具有明确的 {104} 分裂面.
- 了解矿物表面相互作用对于预测地质过程和材料行为至关重要.
研究的目的:
- 为了研究酸对石蚀刻坑形态学的结晶学影响.
- 阐明酸影响石表面溶解的机制.
主要方法:
- 现场原子力显微镜 (AFM) 用于实时观察石表面形态的变化.
- 石晶体受到不同度的酸 (SUC) 的影响.
主要成果:
- 酸诱导了石面上蚀刻坑形态的转变,从形变为六角形.
- 酸度的进一步增加导致了7面和随后5面蚀刻坑的形成.
- 这些形态变化与酸与石 (104) 平面的特定晶体边缘 ([42]和[010]) 的优先结合有关.
结论:
- 酸通过选择性地抑制沿着某些晶体学方向的阶段传播,显著改变石的溶解路径.
- 观察到的蚀刻坑演变表明酸和石表面之间的度依赖相互作用,影响了晶体形态.
相关概念视频
Reactions of Carboxylic Acids: Introduction
Carboxylic acids possess an acidic –COOH functional group. The acidity can be attributed to the resonance stabilization of their conjugate base, wherein the negative charge is delocalized over both oxygen atoms.
Factors Affecting Solubility
Compared with pure water, the solubility of an ionic compound is less in aqueous solutions containing a common ion (one also produced by dissolution of the ionic compound). This is an example of a phenomenon known as the common ion effect, which is a consequence of the law of mass action that may be explained using Le Chȃtelier’s principle. Consider the dissolution of silver iodide:
Physical Properties of Carboxylic Acids
Carboxylic acids with lower molecular weight exhibit a sharp and unpleasant odor. They also have higher boiling and melting points than analogous compounds, such as aldehydes, ketones, and alcohols.
Acid Halides to Carboxylic Acids: Hydrolysis
Hydrolysis of acid halides is a nucleophilic acyl substitution reaction in which acid halides react with water to give carboxylic acids. The reaction occurs readily and does not require acid or a base catalyst.
As shown below, the mechanism involves a nucleophilic attack by water at the carbonyl carbon to form a tetrahedral intermediate. This is followed by the reformation of the carbon–oxygen π bond along with the departure of a halide ion. A final proton transfer step yields carboxylic acid...
As shown below, the mechanism involves a nucleophilic attack by water at the carbonyl carbon to form a tetrahedral intermediate. This is followed by the reformation of the carbon–oxygen π bond along with the departure of a halide ion. A final proton transfer step yields carboxylic acid...
Loss of Carboxy Group as CO2: Decarboxylation of Malonic Acid Derivatives
Just like β-keto acids—which upon thermal decarboxylation form ketones—β-dicarboxylic acids undergo decarboxylation to generate monocarboxylic acids with the liberation of carbon dioxide.
Substituent Effects on Acidity of Carboxylic Acids
The acidity of carboxylic acids is influenced by the nature of the substituents bounded to the functional group. The acid strength is determined by the stability of the carboxylate anion—the conjugate base formed by dissociating the corresponding carboxylic acid.
