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Organic chemistry test study guide notes for reaction of carboxylic acids description and properties concept summary good for mcat prep

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Overview This document serves as a comprehensive study guide focused on the reactions, descriptions, and properties of carboxylic acids. It is tailored for students preparing for organic chemistry tests and specifically for the MCAT. Content Summary Reactions of Carboxylic Acids: Detailed explanations of key reactions involving carboxylic acids, including esterification, reduction, and decarboxylation. Properties: A summary of the physical and chemical properties of carboxylic acids, such as acidity, solubility, and boiling points. Conceptual Framework: An overview that connects the reactions and properties to broader concepts in organic chemistry, aiding in retention and understanding. Utility for MCAT Prep This guide is particularly useful for MCAT preparation as it consolidates essential information about carboxylic acids into an accessible format. Understanding these concepts is crucial since they frequently appear in both organic chemistry sections and biological contexts on the exam.

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Organic Chemistry -Reaction of
Carboxylic Acids
Test Study Guide: -Description and
Properties
Ch.8 Carboxylic Acids -And More

CONCEPT SUMMARY

Reactions of Carboxylic Acids

1. Synthesis:
Carboxylic acids can be synthesized through the oxidation of primary alcohols or aldehydes. Common
oxidizing agents include:
i. Potassium permanganate (KMnO4)
ii. Dichromate salts (e.g., Na2Cr2O7 or K2Cr2O7)
iii. Chromium trioxide (CrO)
2. Nucleophilic Acyl Substitution:
This is a prevalent reaction mechanism for carboxylic acids.
A nucleophile attacks the electrophilic carbonyl carbon, resulting in the opening of the carbonyl group and
forming a tetrahedral intermediate.
The carbonyl group then reforms, leading to the expulsion of a leaving group.
3. Product Formation Based on Nucleophile:
If the nucleophile is ammonia or an amine, an amide is produced, which carries the suffix -amide. Cyclic
amides are referred to as lactams.
If the nucleophile is an alcohol, an ester is formed, designated with the suffix -oate. Cyclic esters are
known as lactones.
If another carboxylic acid acts as the nucleophile, an anhydride is generated. Both linear and cyclic forms
are labeled with the suffix anhydride.

Reduction of Carboxylic Acids

Carboxylic acids can be converted to primary alcohols using strong reducing agents such as lithium aluminum
hydride (LiAlH4).
The reduction process involves the formation of aldehyde intermediates, which are subsequently reduced to
primary alcohols.

Reducing Agents

Sodium borohydride (NaBH4) is a commonly used reducing agent in organic chemistry but lacks the strength
necessary to reduce carboxylic acids.

Decarboxylation of Dicarboxylic Acids

B-dicarboxylic acids and certain -keto acids can undergo spontaneous decarboxylation upon heating, resulting
in the loss of carbon dioxide.
This reaction is facilitated by a six-membered cyclic intermediate.

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