化学
电合成
双功能
催化作用
无机化学
氨生产
法拉第效率
双功能催化剂
格式化
电化学
乙二醇
过电位
组合化学
阳极
化学工程
氨
析氧
玻璃碳
铵
氧化还原
微型多孔材料
作者
Zhanhao Jiang,Mingguo Zhang,Jun Qi,Yanchang Wang,Zhuoyong Yan,Yangjun Ma,Jiachun Li,Hongqi Zou,Yi Ma,Fei Zhan,Jieshan Qiu
摘要
Abstract Paired electrosynthesis that couples nitrate electroreduction (NO3RR) with polyethylene terephthalate (PET) upcycling offers a promising route to close nitrogen and carbon cycles, yet its implementation is hindered by the lack of bifunctional catalysts capable of operating efficiently under high-current conditions. Here, we report a defect-engineered LD-VO-CoO/Co3O4@C heterojunction catalyst synthesized via flash Joule heating, a nonequilibrium strategy that kinetically stabilizes abundant oxygen vacancies and pronounced lattice distortion. LD-VO-CoO/Co3O4@C achieves an outstanding ammonia yield rate of 78.94 mg h–1 cm–2 with a Faradaic efficiency (FE) of 97.14%, together with excellent stability over 300 h, surpassing all reported monometallic cobalt-based catalysts, as well as efficient oxidation of ethylene glycol to formate (98% of FE). In an integrated configuration, the bifunctional LD-VO-CoO/Co3O4@C catalyst enables stable ampere-level paired synthesis (2 A cm–2 @1.86 V, 180 h at 1 A cm–2). An in situ downstream extension strategy is proposed for the first time, enabling ammonium formate production via direct mixing of anodic and cathodic products, and demonstrating a scalable, high-current paired electrosynthesis platform. Techno-economic evaluation highlights a striking overall profit margin of this configuration (75.7%), along with a substantial reduction in carbon footprint, thereby reversing the long-term dilemma of negative profits for ammonia electrosynthesis.
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