Nair Vijay, Balagopal Lakshmi, Rajan Roshini, Mathew Jessy
Organic Chemistry Division, Regional Research Laboratory (CSIR), Trivandrum 695 019, India.
Acc Chem Res. 2004 Jan;37(1):21-30. doi: 10.1021/ar030002z.
Cerium(IV) ammonium nitrate (CAN) has recently emerged as a versatile reagent for oxidative electron transfer; the overwhelming number of reports serve as a testimony to the unparalleled utility of CAN in a variety of transformations of synthetic importance. Our recent work has uncovered novel carbon-carbon bond-forming reactions leading to the one-pot synthesis of dihydrofurans, tetrahydrofurans, and aminotetralins. In addition, we have developed a number of facile carbon-heteroatom bond-forming reactions by the CAN-mediated oxidative addition of soft anions to alkenes. A mechanistic rationale has been provided for the reactions explored. As might be expected of very powerful one-electron oxidants, the chemistry of cerium(IV) oxidation of organic molecules is dominated by radical and radical cation chemistry.
硝酸铈铵(CAN)最近已成为一种用于氧化电子转移的多功能试剂;大量的报告证明了CAN在各种具有合成重要性的转化中具有无与伦比的实用性。我们最近的工作发现了导致二氢呋喃、四氢呋喃和氨基四氢萘一锅法合成的新型碳-碳键形成反应。此外,我们通过CAN介导的软阴离子对烯烃的氧化加成反应,开发了许多简便的碳-杂原子键形成反应。已为所探索的反应提供了机理依据。正如非常强的单电子氧化剂所预期的那样,有机分子的铈(IV)氧化化学主要由自由基和自由基阳离子化学主导。