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Ethers, Epoxides, and Sulfides: Structure, Synthesis, and Reactions

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Naming Ethers

  • How to name ethers using the IUPAC naming system.
    02:08
  • How to name ethers using the common naming system.
    01:32
  • Provide the correct common name of the following ether.
    01:22

Naming Ethers

  • How to name ethers using the IUPAC naming system.
    02:08
  • How to name ethers using the common naming system.
    01:32
  • Provide the correct common name of the following ether.
    01:22

Williamson Ether Synthesis

  • The Mechanism of Williamson Ether Synthesis.
    03:50

Making Ethers - Alkoxymercuration

  • The Mechanism of Alkoxymercuation.
    04:21

Ether Cleavage

  • How to predict the products of Ether Cleavage.
    04:22
  • Predict the product of the following reaction.
    03:44

Thiol Reactions

  • The mechanism of Disulfide Synthesis.
    02:55
  • The mechanism of Sulfide Synthesis.
    03:21

Thiol Reactions

  • The mechanism of Disulfide Synthesis.
    02:55
  • The mechanism of Sulfide Synthesis.
    03:21

Epoxidation

  • Halohydrins to epoxides via intramolecular SN2.
    02:26
  • General properties of epoxidation.
    02:19
  • The mechanism of how peroxy acids make epoxides.
    03:19

Epoxide Reactions

  • Base-Catalyzed Epoxide Ring-Opening
    04:44
  • Acid-Catalyzed Epoxide Ring-Opening
    04:34

Halohydrin

  • Halohydrin Mechanism
    04:48
  • General properties of halohydrin formation.
    01:44

Reaction Mechanism

  • How to tell if charged molecules will react as nucleophiles or electrophiles.
    02:39
  • Nucleophile or Electrophile
    01:49
  • How to tell if uncharged molecules will react as nucleophiles or electrophiles.
    02:48

Nucleophilic Addition

  • Nucleophilic Addition
    08:27

Grignard Reaction

  • Reactions of Organometallics
    13:40