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  1. Amination - Wikipedia

    Amination is the process by which an amine group is introduced into an organic molecule. This type of reaction is important because organonitrogen compounds are pervasive.

  2. Amination - an overview | ScienceDirect Topics

    Amination is defined as a reaction involving the introduction of an amine group into a substrate, which can occur through routes such as transamination and reductive amination, and is increasingly …

  3. Amination Reactions - ChemTalk

    In this article we will talk about amines and their respective properties, with a focus on the different types of amination reactions that they can participate in.

  4. Reductive Amination, and How It Works – Master Organic Chemistry

    Sep 1, 2017 · Reductive amination is a useful process for the synthesis of amines from aldehydes/ketones via imines. Here we show several examples + the mechanism.

  5. 24.6: Synthesis of Amines - Chemistry LibreTexts

    Show how N-methylbenzylamine can be synthesized using a reductive amination. If more than one pathway is possible, draw them both and determine which one would be preferred.

  6. What Is Amination and Why Is It So Important? - Biology Insights

    Aug 16, 2025 · Amination is a chemical transformation where an amino group, typically -NH₂, is added to an organic molecule. An amino group consists of a nitrogen atom bonded to one or two hydrogen …

  7. AMINATION definition and meaning | Collins English Dictionary

    The mineralization of soil proteins mainly includes the amination and ammonification processes.

  8. amination, n. meanings, etymology and more | Oxford English Dictionary

    amination, n. meanings, etymology, pronunciation and more in the Oxford English Dictionary

  9. AMINATION Definition & Meaning | Merriam-Webster Medical

    The meaning of AMINATE is a compound with an amine.

  10. What does AMINATION mean? - Definitions.net

    Amination is the process by which an amine group is introduced into an organic molecule. This type of reaction is important because organonitrogen compounds are pervasive.