串联
电合成
化学
选择性
碳酸二甲酯
电催化剂
催化作用
法拉第效率
电解质
甲醇
钴
电化学
无机化学
组合化学
级联反应
电子转移
作者
Hui Guo,Weixuan Chen,Duan‐Hui Si,Qiang Zhang,Qiao Wu,Yuan‐Biao Huang,Rong Cao
摘要
ABSTRACT Current DMC production is energy‐intensive, while generating CO 2 emissions. Electrosynthesis of DMC from CO 2 offers a sustainable alternative but faces challenges of inert CO 2 activation and unfavorable C‐O coupling, leading to low selectivity and current density. Herein, we propose a tandem electrocatalysis strategy for efficient DMC production from CO 2 under ambient conditions, utilizing a cobalt polyphthalocyanine framework (CoPPc) with single‐atom sites and atomically precise palladium‐sulfur clusters (Pd 6 S 12 ). The CoPPc‐Pd 6 S 12 tandem catalyst system synergistically activates CO 2 and enhances mass transport, elevating the local concentration of key intermediates (CO and methoxy species) for improving DMC production efficiency. Thus, the tandem system delivers exceptional performance with 93.4% DMC selectivity and 34.9 mmol L −1 h −1 production in 0.1 M NaBr methanol electrolyte, while achieving a recorded current density of 155.2 mA cm −2 at 0.5 M electrolyte concentration. In situ generated CO and methoxy over CoPPc efficiently transfer to the Pd‐S site, where achieves intermediate stabilization and optimal coupling orientation, boosting DMC selectivity and current density. Moreover, DFT calculations reveal that the CoPPc‐Pd 6 S 12 system reduces the energy barrier for C‐O coupling, facilitating DMC formation. This work provides an efficient tandem electrocatalysis system for DMC production from CO 2 with high selectivity and large current density.
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