Tron Gian Cesare, Minassi Alberto, Sorba Giovanni, Fausone Mara, Appendino Giovanni
Dipartimento di Scienze del Farmaco, Università degli Studi del Piemonte Orientale, Largo Donegani 2, 28100 Novara, Italy.
Sistema Museale di Ateneo, Archivio Scientifico e Tecnologico dell'Università di Torino, C.so Massimo D'Azeglio 52, 10126 Torino, Italy.
Beilstein J Org Chem. 2021 May 25;17:1335-1351. doi: 10.3762/bjoc.17.93. eCollection 2021.
Organic chemistry honors Icilio Guareschi (1847-1918) with three eponymic reactions, the best known ones being the Guareschi synthesis of pyridones and the Guareschi-Lustgarten reaction. A third Guareschi reaction, the so-called "Guareschi 1897 reaction", is one of the most unusual reactions in organic chemistry, involving the radical-mediated paradoxical aerobic generation of hydrocarbons in near-neutral water solution. A discussion of the mechanism of this amazing reaction, the only metal-free process that generates hydrocarbons, and the implications of the approach in biology and geosciences mirrors the multifaceted scientific personality of the discoverer. Thus, Guareschi's eclectic range of activities spans a surprising variety of topics, overcoming the boundaries of the traditional partition of chemistry into organic, inorganic, and analytical branches and systematically crosses the divide between pure and applied science as well as between the history of chemistry and the personal contributions to its development.
有机化学以三个以人名命名的反应纪念伊西利奥·瓜雷斯基(1847 - 1918),其中最著名的是吡啶酮的瓜雷斯基合成法和瓜雷斯基 - 卢斯加滕反应。瓜雷斯基的第三个反应,即所谓的“1897年瓜雷斯基反应”,是有机化学中最不寻常的反应之一,涉及在近中性水溶液中通过自由基介导的自相矛盾的有氧烃生成过程。对这个惊人反应的机理、唯一的无金属烃生成过程以及该方法在生物学和地球科学中的意义的讨论,反映了发现者多面的科学个性。因此,瓜雷斯基广泛的活动范围涵盖了令人惊讶的各种主题,跨越了将化学传统划分为有机、无机和分析分支的界限,并系统地跨越了纯科学与应用科学之间以及化学史与个人对其发展的贡献之间的鸿沟。