로그인

The hybridized nitrogen atom in amines possesses a lone pair of electrons and is bound to three substituents with a bond angle of around 108°, which is less than the tetrahedral angle of 109.5°. However, the C–N–H bond angle is slightly larger at 112°, with a carbon–nitrogen bond length of 147 pm. This carbon–nitrogen bond length of of amines is longer than the carbon–oxygen bond of alcohols (143 pm) but shorter than alkanes’ carbon–carbon bond (154 pm). These aspects are illustrated in Figure 1.

Figure1

Figure 1. The influence of the lone pair on the bond angle and bond lengths in amines.

Aliphatic amines have trigonal pyramidal geometry, where the pyramid’s apex is occupied by nitrogen, and the three substituents extend toward the triangular base of the pyramid. The nonbonded electron pair is present above the apex of the nitrogen atom. The nitrogen atom in amines with its lone pair and three different substituents becomes a stereogenic center. This results in two nonsuperposable mirror images of enantiomers. The configuration of these enantiomers can be assigned by giving the lowest priority to the unshared electron pair on the nitrogen atom.

Figure2

Figure 2. Pyramidal inversion in amines with a lone pair.

As shown in Figure 2, there is a rapid interconversion via the pyramidal inversion of one enantiomer to the other through an sp2-hybridized transition state, making the resolution of enantiomers difficult. As a result, such chiral amines are optically inactive. For most simple amines, the energy barrier of interconversion is about 25 kJ mol−1.

However, this is not the case with quaternary ammonium salts. As depicted in Figure 3, quaternary ammonium salts, with four different substituents and no electron pair, don’t undergo pyramidal inversion. Hence, they can be easily resolved. Besides quaternary ammonium salts, amines with chiral carbons and amines which cannot attain an sp2-hybridized transition state can also be separated into a pair of enantiomers.

Figure3

Figure 3. The chiral enantiomers of quaternary ammonium salts.

Tags
Amine StructureNitrogen AtomLone PairBond AngleBond LengthTrigonal Pyramidal GeometryStereogenic CenterEnantiomersPyramidal InversionQuaternary Ammonium Salts

장에서 19:

article

Now Playing

19.5 : Structure of Amines

Amines

2.3K Views

article

19.1 : 아민 : 소개

Amines

4.0K Views

article

19.2 : 1차 아민의 명명법

Amines

3.2K Views

article

19.3 : 2차 및 3차 아민의 명명법

Amines

3.5K Views

article

19.4 : 아릴과 헤테로사이클릭 아민의 명명법

Amines

2.2K Views

article

19.6 : 아민의 물리적 특성

Amines

2.8K Views

article

19.7 : 지방족 아민의 염기성

Amines

5.5K Views

article

19.8 : 방향족 아민의 염기성

Amines

6.9K Views

article

19.9 : Heterocyclic Aromatic Amines의 염기성

Amines

5.3K Views

article

19.10 : 아민의 NMR 분광법

Amines

8.0K Views

article

19.11 : 아민의 질량 분석

Amines

4.0K Views

article

19.12 : 아민의 준비: 암모니아와 아민의 알킬화

Amines

3.1K Views

article

19.13 : 1° 아민의 제조: 아지드 합성

Amines

3.7K Views

article

19.14 : 1° 아민의 제조: Gabriel Synthesis

Amines

3.4K Views

article

19.15 : 아민의 제조: oximes 및 nitro 화합물의 감소

Amines

3.2K Views

See More

JoVE Logo

개인 정보 보호

이용 약관

정책

연구

교육

JoVE 소개

Copyright © 2025 MyJoVE Corporation. 판권 소유