Singh Fateh V, Shetgaonkar Samata E, Krishnan Manjula, Wirth Thomas
Chemistry Department, SAS, Vellore Institute of Technology - Chennai, Vandalur-Kelambakkam Road, Chennai-600127, Tamil Nadu, India.
School of Chemistry, Cardiff University, Cardiff, UK.
Chem Soc Rev. 2022 Sep 20;51(18):8102-8139. doi: 10.1039/d2cs00206j.
Hypervalent iodine compounds as environmentally friendly and relatively inexpensive reagents have properties similar to transition metals. They are employed as alternatives to transition metal catalysts in organic synthesis as mild, nontoxic, selective and recyclable catalytic reagents. Formation of C-N, C-O, C-S, C-F and C-C bonds can be seamlessly accomplished by hypervalent iodine catalysed oxidative functionalisations. The aim of this review is to highlight recent developments in the utilisation of iodine(III) and iodine(V) catalysts in the synthesis of a wide range of organic compounds including chiral catalysts for stereoselective synthesis. Polymer-, magnetic nanoparticle- and metal organic framework-supported hypervalent iodine catalysts are also described.
高价碘化合物作为环境友好且相对廉价的试剂,具有与过渡金属相似的性质。它们在有机合成中作为温和、无毒、选择性和可回收的催化试剂,被用作过渡金属催化剂的替代品。通过高价碘催化的氧化官能团化反应,可以无缝实现碳-氮、碳-氧、碳-硫、碳-氟和碳-碳键的形成。本综述的目的是突出碘(III)和碘(V)催化剂在合成包括用于立体选择性合成的手性催化剂在内的多种有机化合物方面的最新进展。还介绍了聚合物、磁性纳米颗粒和金属有机框架负载的高价碘催化剂。