Aryloxy – Definition & Meaning

Aryloxy is a term that is commonly used in the field of chemistry. It is a term that describes a particular group of chemical compounds that contain an aryl group attached to an oxygen atom. These compounds are widely used in the production of various industrial and pharmaceutical products. In this article, we will explore the definition and meaning of aryloxy in detail.

Definitions

Aryloxy is a term that is used to describe a class of organic compounds that contain an aryl group attached to an oxygen atom. The aryl group can be any aromatic ring, such as benzene, naphthalene, or phenanthrene. These compounds are typically prepared by reacting an aryl halide with an alcohol in the presence of a base.

Origin

The term aryloxy is derived from the words “aryl” and “oxy”, which refer to the aryl group and the oxygen atom, respectively. The term was first used in the early 20th century by chemists who were studying the properties of these compounds.

Meaning in different dictionaries

The meaning of aryloxy can vary slightly depending on the dictionary that is consulted. However, most dictionaries define aryloxy as a compound that contains an aryl group attached to an oxygen atom.

Associations

Aryloxy compounds are widely used in the production of various industrial and pharmaceutical products. They are used as intermediates in the synthesis of dyes, polymers, and agrochemicals. They are also used as building blocks in the synthesis of drugs, such as anti-inflammatory agents and antihistamines.

Synonyms

Some synonyms of aryloxy include aryl ether, arylalkoxy, and aryl-oxygen.

Antonyms

As aryloxy is a specific term, there are no antonyms that can be associated with it.

The same root words

Aryloxy is derived from the words “aryl” and “oxy”. These words are used in other chemical terms, such as aryl halide, arylamine, and oxyacid.

Example Sentences

  1. The synthesis of the drug involved the use of an aryloxy compound as an intermediate.
  2. The aryl group in the aryloxy compound provided the necessary aromaticity for the reaction to proceed.
  3. The aryloxy ether was found to be a potent inhibitor of the enzyme.
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