WestCHEM, Department of Pure and Applied Chemistry, University of Strathclyde, 295 Cathedral Street, Glasgow G1 1XL, United Kingdom.
J Am Chem Soc. 2013 Jul 31;135(30):10934-7. doi: 10.1021/ja4050168. Epub 2013 Jul 19.
The prevalence of metal-based reducing reagents, including metals, metal complexes, and metal salts, has produced an empirical order of reactivity that governs our approach to chemical synthesis. However, this reactivity may be influenced by stabilization of transition states, intermediates, and products through substrate-metal bonding. This article reports that in the absence of such stabilizing interactions, established chemoselectivities can be overthrown. Thus, photoactivation of the recently developed neutral organic superelectron donor 5 selectively reduces alkyl-substituted benzene rings in the presence of activated esters and nitriles, in direct contrast to metal-based reductions, opening a new perspective on reactivity. The altered outcomes arising from the organic electron donors are attributed to selective interactions between the neutral organic donors and the arene rings of the substrates.
金属基还原剂(包括金属、金属配合物和金属盐)的普遍存在产生了一个经验反应活性顺序,指导着我们的化学合成方法。然而,这种反应活性可能受到通过底物-金属键稳定过渡态、中间体和产物的影响。本文报道称,在没有这种稳定相互作用的情况下,已建立的化学选择性可以被推翻。因此,最近开发的中性有机超电子给体 5 的光活化可在激活酯和腈的存在下选择性还原取代的烷基苯环,与金属基还原形成直接对比,为反应性开辟了新的视角。中性有机给体产生的改变的结果归因于中性有机给体与底物芳环之间的选择性相互作用。