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[产生自由基物种的方法的开发及合成应用]

[Development of Methods to Generate Radical Species and Synthetic Applications].

作者信息

Nakajima Masaya

机构信息

Graduate School of Faculty of Pharmaceutical Sciences, Chiba University.

出版信息

Yakugaku Zasshi. 2024;144(8):781-790. doi: 10.1248/yakushi.24-00073.

Abstract

Radicals are chemical species bearing an isolated single electron. They have developed in a complementary manner to the two-electron species such as anions and cations. Radical species are classified into different groups according to their electronic states, such as cation radicals, neutral radicals, anion radicals, and biradicals, each of which has high reactivity and induces specific reactions. The authors have been developing studies on radical species to establish the generation methods and to control their reactivity. The author has found that heavy atom-containing compounds can undergo photochemical reactions that generate radical species through direct S→T transitions. The S→T absorption band exists in a longer wavelength region than the corresponding S→S band, and thus light in the near-visible light region can be used for the reactions. Although the absorption efficiency of the S→T transition is not high, it is possible to selectively excite heavy atom-containing molecules by irradiation of near-visible light, thus making it possible to control the generation and reactivity of radical species. The author also succeeded in developing a ligand that is activated by visible light irradiation to generate the monovalent palladium radical species. By using this ligand, it was possible to efficiently generate radical species of transition metals. Furthermore, depending on the valence of the palladium used, radical species with opposite properties could be generated.

摘要

自由基是带有孤立单电子的化学物种。它们与诸如阴离子和阳离子等双电子物种以互补的方式发展而来。自由基物种根据其电子状态分为不同的类别,如阳离子自由基、中性自由基、阴离子自由基和双自由基,每一类都具有高反应活性并引发特定反应。作者一直在开展关于自由基物种的研究,以建立其生成方法并控制其反应活性。作者发现含重原子的化合物可发生光化学反应,通过直接的S→T跃迁产生自由基物种。S→T吸收带出现在比相应的S→S带更长的波长区域,因此近可见光区域的光可用于这些反应。尽管S→T跃迁的吸收效率不高,但通过近可见光照射可以选择性地激发含重原子的分子,从而能够控制自由基物种的生成和反应活性。作者还成功开发了一种通过可见光照射激活以生成一价钯自由基物种的配体。通过使用这种配体,可以高效地生成过渡金属自由基物种。此外,根据所用钯的价态,可以生成具有相反性质的自由基物种。

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