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相关概念视频

Basicity of Aliphatic Amines01:21

Basicity of Aliphatic Amines

5.9K
Amines can behave as Brønsted–Lowry bases by accepting a proton from the acid to form corresponding conjugate acids. Due to a lone pair of nonbonding electrons, aliphatic amines can also act as Lewis bases by forming a covalent bond with an electrophile.
To measure the basicity of amines, two conventions are generally used. The first defines Kb as the basicity constant for the deprotonation reaction of water by the amine, as presented in Figure 1. Conventionally, lower Kb indicates...
5.9K
Preparation of Amines: Alkylation of Ammonia and Amines01:30

Preparation of Amines: Alkylation of Ammonia and Amines

3.3K
Alkylation is one of the methods used to prepare amines. Direct alkylation of ammonia or a primary amine with an alkyl halide gives polyalkylated amines along with a quaternary ammonium salt through successive SN2 reactions. This process of making the quaternary salt through the direct alkylation method is called exhaustive alkylation.
Each alkylation step makes the nitrogen center more nucleophilic, which triggers successive alkylations until a quaternary ammonium salt is formed. Considering...
3.3K
Aldehydes and Ketones with Amines: Imine and Enamine Formation Overview01:16

Aldehydes and Ketones with Amines: Imine and Enamine Formation Overview

4.7K
Primary amines react with carbonyl compounds—aldehydes and ketones—to generate imines. Imines consist of a C=N double bond and are named Schiff bases after its discoverer—the German chemist Hugo Schiff. On the other hand, secondary amines react with carbonyl compounds to give enamines. In enamines, the presence of a C=C double bond adjacent to the nitrogen atom leads to the delocalization of the lone pair.
4.7K
Preparation of 1° Amines: Gabriel Synthesis01:28

Preparation of 1° Amines: Gabriel Synthesis

3.6K
Direct alkylation is not a suitable method for synthesizing amines because it produces polyalkylated products. Gabriel synthesis is the most preferred method to exclusively make primary amines. The method uses phthalimide, which contains a protected form of nitrogen that participates in alkylation only once to predominantly give primary amines.
Strong bases like NaOH or KOH deprotonate the phthalimide to form the corresponding anion, which acts as a nucleophile. Further, the anion attacks an...
3.6K
Preparation of Amines: Reductive Amination of Aldehydes and Ketones01:38

Preparation of Amines: Reductive Amination of Aldehydes and Ketones

2.8K
Carbonyl compounds and primary amines undergo reductive amination first to produce imines, followed by secondary amines in the same reaction mixture, using selective reducing agents like sodium cyanoborohydride or sodium triacetoxyborohydride. Reductive amination produces different degrees of substitution of amines depending on the starting amine substrate.
2.8K
Preparation of 1° Amines: Azide Synthesis01:22

Preparation of 1° Amines: Azide Synthesis

3.9K
Direct alkylation of ammonia produces polyalkylated amines, along with a quaternary ammonium salt. To exclusively prepare primary amines, the azide synthesis method can be used.
Azide ions act as good nucleophiles and react with unhindered alkyl halides to form alkyl azides. Alkyl azides do not participate in further nucleophilic substitution reactions, thereby eliminating the chances of polyalkylated products. Alkyl azides are reduced by hydride-based reducing agents, like lithium aluminum...
3.9K

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相关实验视频

Updated: Jul 3, 2025

Characterization of pH-Dependent Reversible Self-Assembly of Amyloid Beta 1-40-Coated Gold Colloids
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Characterization of pH-Dependent Reversible Self-Assembly of Amyloid Beta 1-40-Coated Gold Colloids

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二次胺和Au电极之间强大的结合.

Weiyi Guo1, Timothy Quainoo2, Zhen-Fei Liu2

  • 1Department of Physics, City University of Hong Kong, Kowloon 999077, Hong Kong SAR, China. haixinli@cityu.edu.hk.

Chemical communications (Cambridge, England)
|February 15, 2024
PubMed
概括

二次胺形成了强大的单分子结点与涂层的金电极. 这种结合归因于黄金 adatom 形成的增加,与非涂层尖端不同.

科学领域:

  • 分子电子学分子电子学
  • 表面科学是一门科学.
  • 有机化学 有机化学

背景情况:

  • 初级氨基是单分子结点中的常见链接物.
  • 甲基替代 (形成二次氨基) 对链接特性的影响尚不清楚.

研究的目的:

  • 调查二次氨基的结合特性作为链接组.
  • 确定电极涂层对二次氨基结形成的影响.

主要方法:

  • 使用二次胺来制造单分子结点.
  • 使用未涂层和涂层的金 (Au) 尖端用于电极接触.
  • 分析了连接点的稳定性和结合特性.

主要成果:

  • 二次胺与Au电极的强有力的结合在没有涂层的尖端是不存在的.
  • 通过使用涂上的Au尖端实现了成功和坚固的结合.
  • 提议在覆盖的尖端频繁形成黄金 adatom 催化二次氨基结合.

结论:

  • 二次胺可以在单分子结点中作为有效的链接组起作用.
  • 电极表面的修改 (涂层) 显著影响了链接器的结合.

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  • 黄金习惯形成是实现强大的二次氨基金电极相互作用的关键因素.