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  1. A sigmatropic rearrangement, the third general kind of pericyclic reaction, is a process in which a σ -bonded substituent atom or group migrates across a π electron system from one position to another. A σ bond is broken in the reactant, the π bonds move, and a new σ bond is formed in the product. The σ -bonded group can be either at the ...

  2. Wiedamannic acid and (+)-arteannuin M. A tandem oxy-Cope–Claisen–ene reaction is the keystone of a strategy for the syntheses of a number of diterpenes, including a plant natural product of the abietane family wiedamannic acid (8). 4 In this illustrative case (Scheme 2), the substrate (9) is readily accessed in two steps from isopulegone. 5 Upon microwave irradiation at 210 °C for 1 h ...

    • Elizabeth A. Ilardi, Craig E. Stivala, Armen Zakarian
    • 10.1039/b901177n
    • 2009
    • 2009/11
  3. Because a [1,5] sigmatropic rearrangement involves three electron pairs (two π bonds and one σ bond), the orbital-symmetry rules in Table 30.3 predict a suprafacial reaction. In fact, the [1,5] suprafacial shift of a hydrogen atom across two double bonds of a π system is a commonly observed sigmatropic rearrangements. For example, 5-methyl-1 ...

  4. All of the sigmatropic rearrangements that we have seen so far are reactions of neutral molecules. That is the case for most sigmatropic rearrangements, but charged molecules also participate in these transformations. The Wittig rearrangement is an anionic [2,3] sigmatropic rearrangement of an allylic ether to yield a homoallylic alcohol.

  5. Sep 25, 2024 · In fact, the [1,5] suprafacial shift of a hydrogen atom across two double bonds of a π π system is a commonly observed sigmatropic rearrangements. For example, 5-methyl-1,3-cyclopentadiene rapidly rearranges at room temperature to yield a mixture of 1-methyl-, 2-methyl-, and 5-methyl-isomers. As another example, heating 5,5,5-trideuterio- (3 ...

  6. Jan 23, 2023 · Molecular rearrangements in which a σ-bonded atom or group, flanked by one or more π-electron systems, shifts to a new location with a corresponding reorganization of the π-bonds are called sigmatropic reactions. The total number of σ-bonds and π-bonds remain unchanged. These rearrangements are described by two numbers set in brackets ...

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  8. Among the fundamental chemical transformations in organic synthesis, the [3,3]-sigmatropic rearrangement occupies a unique position as a powerful, reliable, and well-defined method for the stereoselective construction of carbon–carbon or carbon–heteroatom bonds. While many other reactions can unite two subunits and

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