The catalytic upgrading of bulk feedstock chemicals into value-added products represents a powerful approach in modern chemical synthesis. Herein, we describe an iron-catalyzed photoelectrochemical strategy that enables the efficient conversion of nitromethane (MeNO2), an abundant industrial feedstock, into synthetically valuable nitric oxide (·NO). This proof-of-concept platform allows the direct synthesis of structurally diverse oximes from MeNO2 and alcohols and exhibits broad functional group tolerance, including compatibility with carbonyl groups and acid-sensitive motifs such as esters and silyl ethers. Mechanistic investigations reveal that the iron catalyst plays a dual role: promoting radical deformylation of alcohols or ring-opening of cycloalkanols and mediating the conversion of MeNO2 into ·NO.
Wang et al. (2026) studied this question.
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