胺分子在碳氧酸功能化聚乙烯表面上的分子行为
Jianing Gan1, Gladwin Labrague1, Hanze Ying2
1Department of Chemistry, University of Michigan, 930 North University Avenue, Ann Arbor, Michigan 48103, United States.
Langmuir : the ACS journal of surfaces and colloids
|February 28, 2025
概括
这项研究研究了由聚乙烯上的胺形成的自组装单层 (SAM). 类型,度和聚合物矩阵组成显著影响SAM质量和表面特性.
科学领域:
- 材料科学 材料科学 材料科学
- 表面化学 表面化学
- 聚合物科学 聚合物科学
背景情况:
- 自组装单层 (SAM) 对于定制水性和滑性等表面特性至关重要.
- 调查SAM是具有挑战性的,因为它们的表面度很低.
- 从聚乙烯涂层中分离出来的胺可以形成SAM.
研究的目的:
- 研究碳酸功能化聚乙烯上的胺中SAM的形成和结构.
- 了解/聚合物比率,聚合物矩阵配方和分子类型如何影响SAM形成.
- 探索热处理对SAM质量的影响.
主要方法:
- 总频率生成 (SFG) 振动光谱法用于分析SAM结构.
- /聚合物比率,聚合物矩阵组成和分子结构的系统变化.
- 对聚合物样品进行受控的热处理.
主要成果:
- 形成的SAM的质量强烈依赖于的分子类型,度和聚合物矩阵组成.
- 热处理对从弱陷的中形成的SAM产生了积极的影响.
- 与聚合物矩阵强烈相互作用的受热处理的影响较小.
结论:
- 胺的表面分离和自我组装可以在聚乙烯表面上创建功能性SAM.
- 控制和聚合物矩阵特征是实现所需SAM质量的关键.
- 了解这些因素可以在聚合物涂层中量身定制表面特性.
相关概念视频
Amides to Carboxylic Acids: Hydrolysis
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Amides can undergo either acid-catalyzed hydrolysis or base-promoted hydrolysis through a typical nucleophilic acyl substitution. Each hydrolysis requires severe conditions.
Acid-catalyzed hydrolysis:
Hydrolysis of amides under acidic conditions yields carboxylic acids. Since the reaction occurs slowly, hydrolysis requires the conditions of heat.
The mechanism begins with the protonation of the carbonyl oxygen by the acid catalyst. The protonation makes the amide carbonyl carbon more...
Acid-catalyzed hydrolysis:
Hydrolysis of amides under acidic conditions yields carboxylic acids. Since the reaction occurs slowly, hydrolysis requires the conditions of heat.
The mechanism begins with the protonation of the carbonyl oxygen by the acid catalyst. The protonation makes the amide carbonyl carbon more...
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Physical Properties of Carboxylic Acid Derivatives
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Intermolecular forces dictate several physical properties such as boiling points, melting points, solubilities, and so forth. They are classified into four types: ionic forces, hydrogen bonds, dipole–dipole forces, and dispersion forces. Ionic forces are the strongest, while dispersion forces are the weakest.
Among the carboxylic acid derivatives, the boiling points of acid chlorides and esters are very similar and are the lowest in the series. Acid anhydrides have slightly higher boiling...
Among the carboxylic acid derivatives, the boiling points of acid chlorides and esters are very similar and are the lowest in the series. Acid anhydrides have slightly higher boiling...
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Amines to Amides: Acylation of Amines
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Various carboxylic acid derivatives (such as acid chlorides, esters, and anhydrides) can be used for the acylation of amines to yield amides. The reaction requires two equivalents of amines. The first amine molecule functions as a nucleophile and attacks the carbonyl carbon to produce a tetrahedral intermediate. This is followed by the loss of the leaving group and restoration of the C=O bond.
Next, the second equivalent of amine serves as a Brønsted base and deprotonates the quaternary...
Next, the second equivalent of amine serves as a Brønsted base and deprotonates the quaternary...
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Nomenclature of Carboxylic Acid Derivatives: Amides and Nitriles
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Naming Amides
The IUPAC and common names of amides are derived from the parent carboxylic acid, by replacing the suffix “oic acid” and “ic acid,” respectively, with “amide.” In the following example, the IUPAC name ethanamide is derived from ethanoic acid, and the common name, acetamide, is obtained from acetic acid.
The IUPAC and common names of amides are derived from the parent carboxylic acid, by replacing the suffix “oic acid” and “ic acid,” respectively, with “amide.” In the following example, the IUPAC name ethanamide is derived from ethanoic acid, and the common name, acetamide, is obtained from acetic acid.
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Preparation of Amides
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Amides are synthesized by treating carboxylic acids with amines in the presence of dehydrating agents like dicyclohexylcarbodiimide (DCC).
The DCC-promoted synthesis of amides begins with the protonation of DCC by carboxylic acid. The protonation makes it a better acceptor. Next, the addition of carboxylate to the protonated carbodiimide gives a reactive acylating agent.
Subsequently, the amine acts as a nucleophile that attacks the acylating agent to form a tetrahedral intermediate. In the...
The DCC-promoted synthesis of amides begins with the protonation of DCC by carboxylic acid. The protonation makes it a better acceptor. Next, the addition of carboxylate to the protonated carbodiimide gives a reactive acylating agent.
Subsequently, the amine acts as a nucleophile that attacks the acylating agent to form a tetrahedral intermediate. In the...
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Structures of Carboxylic Acid Derivatives
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Structure of Carboxylic Acid Derivatives
Carboxylic acid derivatives contain an acyl group attached to a heteroatom such as chlorine, oxygen, or nitrogen. The carbonyl carbon and oxygen are both sp2-hybridized with an unhybridized p orbital.
The three sp2 orbitals of the carbonyl carbon form three σ bonds, one each with the carbonyl oxygen, the α carbon, and the heteroatom, whereas the other two sp2 orbitals of the carbonyl oxygen are occupied by the lone pairs. Further, the...
Carboxylic acid derivatives contain an acyl group attached to a heteroatom such as chlorine, oxygen, or nitrogen. The carbonyl carbon and oxygen are both sp2-hybridized with an unhybridized p orbital.
The three sp2 orbitals of the carbonyl carbon form three σ bonds, one each with the carbonyl oxygen, the α carbon, and the heteroatom, whereas the other two sp2 orbitals of the carbonyl oxygen are occupied by the lone pairs. Further, the...
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