JoVE Logo

Sign In

15.14 : C–C Bond Formation: Aldol Condensation Overview

Aldol condensation is an important route in synthetic organic chemistry used to generate a new carbon–carbon bond under basic or acidic conditions. The aldol condensation reaction presented in Figure 1 constitutes an aldol addition reaction followed by the dehydration process.

Figure1

Figure 1. The general aldol addition reaction of aldehydes.

Aldol addition reactions are reversible and are of two types: self-addition and crossed-addition. Combining two identical carbonyl compounds is called self-addition. As shown in Figure 2, the reaction between two different carbonyl compounds is called crossed-addition. Of the two carbonyl compounds involved in the reaction, one functions as a nucleophile and the other as an electrophile.

Figure2

Figure 2. The crossed aldol addition reaction of aldehydes.

The two types of aldol addition reactions produce a β-hydroxy carbonyl as the aldol addition product. While a self-addition reaction yields a single aldol product, a crossed-addition results in a mixture of products, decreasing the reaction's usefulness in organic chemistry. Accordingly, the choice of reactants is paramount in defining the efficacy of the reaction.

Figure 3 depicts the subsequent dehydration of a β-hydroxy carbonyl compound under suitable reaction conditions to form the corresponding condensation product.

Figure3

Figure 3. The dehydration reaction of aldols.

Tags

Aldol CondensationSynthetic Organic ChemistryCarbon carbon BondAldol AdditionReversible ReactionsSelf additionCrossed additionCarbonyl CompoundsNucleophileElectrophilehydroxy CarbonylDehydration ReactionReaction Conditions

From Chapter 15:

article

Now Playing

15.14 : C–C Bond Formation: Aldol Condensation Overview

α-Carbon Chemistry: Enols, Enolates, and Enamines

13.4K Views

article

15.1 : תגובתיות של אנולים

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.9K Views

article

15.2 : תגובתיות של יוני אנולט

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.4K Views

article

15.3 : סוגי אנולים ואנולטים

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.5K Views

article

15.4 : מוסכמות מנגנון Enolate

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.0K Views

article

15.5 : היווצרות רגיוסלקטיבית של אנולטים

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.5K Views

article

15.6 : השפעות סטריאוכימיות של אנוליזציה

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.0K Views

article

15.7 : α-הלוגנציה מזורזת חומצה של אלדהידים וקטונים

α-Carbon Chemistry: Enols, Enolates, and Enamines

3.5K Views

article

15.8 : α-הלוגנציה מקודמת בסיס של אלדהידים וקטונים

α-Carbon Chemistry: Enols, Enolates, and Enamines

3.3K Views

article

15.9 : הלוגנציה מרובה של קטונים מתיל: תגובת הלופורם

α-Carbon Chemistry: Enols, Enolates, and Enamines

1.9K Views

article

15.10 : α-הלוגנציה של נגזרות חומצה קרבוקסילית: סקירה כללית

α-Carbon Chemistry: Enols, Enolates, and Enamines

3.2K Views

article

15.11 : α-ברום של חומצות קרבוקסיליות: תגובת גיהנום-וולהרד-זלינסקי

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.9K Views

article

15.12 : תגובות של תרכובות α-Halocarbonyl: החלפה נוקלאופילית

α-Carbon Chemistry: Enols, Enolates, and Enamines

3.2K Views

article

15.13 : ניטרוזיציה של אנולים

α-Carbon Chemistry: Enols, Enolates, and Enamines

2.4K Views

article

15.15 : תגובת תוספת Aldol בקטליזציה בסיסית

α-Carbon Chemistry: Enols, Enolates, and Enamines

3.1K Views

See More

JoVE Logo

Privacy

Terms of Use

Policies

Research

Education

ABOUT JoVE

Copyright © 2025 MyJoVE Corporation. All rights reserved