Dynamic multimodal cation-carbon interaction for efficient adiponitrile electrosynthesis
Wei Du, Chun-Chieh Yu, Jipeng Xu, Rusheng Wang, Yuancheng Jing, Chenglai Wang, Shuangshuang Cha, Tianyu Sheng, Mengxin Qu, Jianyu Ren, Ran Wang, Zhongqiang Deng, Junze Wang, Chang Yan, Xinsheng Zhang, Cheng Lian, Honglai Liu, Wei Xiong, Ming GongAdiponitrile electrosynthesis from acrylonitrile hydrodimerization is critical for the nylon industry. However, the key step of single-electron acrylonitrile reduction demands toxic heavy-metal electrodes and leads to low energy efficiency. We developed a dynamic multimodal cation-electrode interaction strategy to enable efficient synthesis with environmentally friendly carbon electrodes. Optimal benzyltrihexylammonium cations create a water-depleted interface in aqueous electrolytes by squeezing the electric double layer through multimodal noncovalent interactions between the benzyl moieties of the cations and carbon electrodes. This strategy achieves selectivity comparable to the standard lead-based system but at substantially lower overpotentials, as demonstrated from the laboratory scale to a 159–square centimeter electrolyzer. This work underscores the importance of tailoring cation-centered microenvironments for sustainable, industrial organic electrosynthesis in more conductive aqueous systems.