
Carbonyl group - Wikipedia
In organic chemistry, a carbonyl group is a functional group with the formula C=O, composed of a carbon atom double-bonded to an oxygen atom, and it is divalent at the C atom.
Carbonyl Group: Structure, Formula, Compounds, & Reactions
What is a carbonyl functional group. Learn its formula, properties, classification, and reactions. Check out a few examples of carbonyl compounds.
Carbonyl group | Aldehydes, Ketones & Organic Compounds
Carbonyl group, in organic chemistry, a divalent chemical unit consisting of a carbon (C) and an oxygen (O) atom connected by a double bond. The group is a constituent of carboxylic acids, esters, …
What Is a Carbonyl? Key Group in Organic Chemistry
A carbonyl group is a fundamental chemical structure found across countless organic molecules. It consists of a carbon atom connected to an oxygen atom by a double bond. This arrangement is a …
Carbonyl Group - an overview | ScienceDirect Topics
A carbonyl group consists of a double bond linking a carbonyl carbon atom and a carbonyl oxygen atom. The carbonyl oxygen atom shares two of its six valence electrons with the carbonyl carbon atom.
Carbonyl Groups Definition - Organic Chemistry Key Term | Fiveable
A carbonyl group is a functional group in organic chemistry that consists of a carbon atom double-bonded to an oxygen atom. It is a key structural feature in many important organic compounds and …
What Is a Carbonyl Group? Examples in Organic Chemistry
Mar 26, 2025 · Learn what the carbonyl group is, how it appears in organic molecules, and why it’s central to many chemical reactions.
18.14: Preview of Carbonyl Chemistry - Chemistry LibreTexts
This section introduces carbonyl chemistry, focusing on the properties and reactivity of carbonyl compounds, which include aldehydes and ketones. These compounds are significant in organic …
Carbonyl Functional Group - ChemTalk
The carbonyl group structure, reactions, and similar molecules (such as aldehydes and ketones) are discussed with examples!
Carbonyl Group - Division of Chemical Education, Purdue University
As a result, the carbonyl group is best described as a hybrid of the following resonance structures. We can represent the polar nature of this hybrid by indicating the presence of a slight negative charge on …