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  1. Azide - Wikipedia

    The azide anion behaves as a nucleophile; it undergoes nucleophilic substitution for both aliphatic and aromatic systems. It reacts with epoxides, causing a ring-opening; it undergoes Michael …

  2. Azide | Synthesis, Reactions, Explosive | Britannica

    azide, any of a class of chemical compounds containing three nitrogen atoms as a group, represented as (-N 3).

  3. Reactions of Azides - Substitution, Reduction, Rearrangements, …

    Jun 29, 2018 · The usual procedure is to use an azide salt such as NaN 3 or KN 3 with the appropriate alkyl halide in a polar aprotic solvent such as acetonitrile (CH 3 CN) or …

  4. Information on Azide Compounds – Stanford Environmental …

    Sodium azide, for example, is used as a preservative, mutagen, biocide, and assay reagent. Organic azides are capable of a great diversity of organic reactions and are important …

  5. According to the Centers for Disease Control: Exposure to small amounts of sodium azide can result in rapid breathing, restlessness, dizziness, weakness, headache, nausea, vomiting, …

  6. Azide synthesis by azidonation, azidation or substitution

    Comprehensive guide on azide synthesis methods, including azidonation, azidation, and substitution for various applications in organic chemistry.

  7. AZIDE Definition & Meaning - Merriam-Webster

    Oct 5, 2022 · The meaning of AZIDE is a compound containing the group N3 combined with an element or radical.

  8. Azides - MilliporeSigma

    Explore the diverse range of azide compounds ideal for applications in click chemistry, cell culture, molecular biology, and biochemical research.

  9. What is an azide and how is it formed? - TutorChase

    In summary, azides are a class of compounds containing the -N3 group, formed by the reaction of sodium azide with an alkyl halide. They are used in organic synthesis and explosives, and are …

  10. KIT - IOC - Bräse - Research - Research interests - Azide

    The azide group comprises a remarkable chemical reactivity, which is ascribed to the exceptional leaving group ability of molecular nitrogen. Whether acting as electrophiles, nucleophiles or as …