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Electrosynthesis of a nylon-6 precursor from cyclohexanone and nitrite under ambient conditions.


ABSTRACT: Cyclohexanone oxime, an important nylon-6 precursor, is conventionally synthesized through cyclohexanone-hydroxylamine (NH2OH) and cyclohexanone ammoxidation methodologies. These strategies require complicated procedures, high temperatures, noble metal catalysts, and toxic SO2 or H2O2 usage. Here, we report a one-step electrochemical strategy to synthesize cyclohexanone oxime from nitrite (NO2-) and cyclohexanone under ambient conditions using a low-cost Cu-S catalyst, avoiding complex procedures, noble metal catalysts and H2SO4/H2O2 usage. This strategy produces 92% yield and 99% selectivity of cyclohexanone oxime, comparable to the industrial route. The reaction undergoes a NO2- → NH2OH→oxime reaction pathway. This electrocatalytic strategy is suitable for the production of other oximes, highlighting the methodology universality. The amplified electrolysis experiment and techno-economic analysis confirm its practical potential. This study opens a mild, economical, and sustainable way for the alternative production of cyclohexanone oxime.

SUBMITTER: Wu Y 

PROVIDER: S-EPMC10219941 | biostudies-literature | 2023 May

REPOSITORIES: biostudies-literature

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Electrosynthesis of a nylon-6 precursor from cyclohexanone and nitrite under ambient conditions.

Wu Yongmeng Y   Zhao Jinghui J   Wang Changhong C   Li Tieliang T   Zhao Bo-Hang BH   Song Ziyang Z   Liu Cuibo C   Zhang Bin B  

Nature communications 20230526 1


Cyclohexanone oxime, an important nylon-6 precursor, is conventionally synthesized through cyclohexanone-hydroxylamine (NH<sub>2</sub>OH) and cyclohexanone ammoxidation methodologies. These strategies require complicated procedures, high temperatures, noble metal catalysts, and toxic SO<sub>2</sub> or H<sub>2</sub>O<sub>2</sub> usage. Here, we report a one-step electrochemical strategy to synthesize cyclohexanone oxime from nitrite (NO<sub>2</sub><sup>-</sup>) and cyclohexanone under ambient con  ...[more]

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