酸化反応で長年存在が予測されていた分子を初めて直接観測 (Scientists confirm existence of molecule long believed to occur in oxidation)

2026-03-13 スウェーデン王立工科大学(KTH)

KTH王立工科大学の研究チームは、長年理論的に存在が示唆されてきた酸化過程中の分子の実在を初めて実験的に確認した。高度な分光分析と反応制御により、この不安定で短寿命な分子の生成と挙動を直接観測することに成功。これにより、酸化反応の詳細なメカニズム理解が進み、大気化学や燃焼、環境反応モデルの精度向上に寄与する重要な知見が得られた。従来は仮説にとどまっていた反応中間体の実証は、化学反応解析の新たな基盤を築く成果である。

<関連情報>

気相ラジカル反応における捉えどころのない四酸化物の観測は、ラッセル機構を支持する Observing elusive tetroxides in gas-phase radical reactions supports the Russell mechanism

Barbara Nozière and Roger Patrick
Science Advances  Published:13 Mar 2026

酸化反応で長年存在が予測されていた分子を初めて直接観測 (Scientists confirm existence of molecule long believed to occur in oxidation)

Abstract

Organic peroxy radicals (RO2) are important intermediates for oxidation processes in aerobic chemical systems. Their self- and “cross”-reactions (i.e., with themselves and other RO2) are increasingly receiving attention in a wide range of applications, from atmospheric chemistry to cancer therapies. However, their mechanism has been debated for decades. The Russell mechanism, widely assumed for these reactions today, is characterized by a tetroxide intermediate, only observed once and partially since its postulate in 1957. Here we report the observation of tetroxides in the gas-phase reactions of different RO2 by direct mass spectrometry, in which ionic and gas-phase dimerization could be ruled out. Within the uncertainties in the kinetic profiles, the lifetime for CH3OOOOCH3 was determined to be in the range 0.2 and 200 milliseconds, consistent with an intermediate and supporting the Russell mechanism.

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