电合成
煅烧
材料科学
己二酸
法拉第效率
化学工程
多孔性
催化作用
蒸发
氮化物
产量(工程)
金属
多相催化
多孔介质
纳米技术
电化学
分解水
乙酰丙酸
无机化学
磷酸
燃烧
氨生产
放热反应
氨
溶剂
电解
氧化还原
绿色化学
金属有机骨架
作者
Pengfei Liu,Deqing Tang,Huiqin Yao,Bo Xiao,Shu Han,Chuncai Kong,Yusheng Li,Ben Liu
摘要
ABSTRACT Porous high‐entropy metal nitrides (HENs) have great potential in catalysis and electrocatalysis, but remain unexplored due to severe challenge in precise synthesis and engineering of hierarchical structures. Herein, we report, for the first time, a facile yet general route, by taking advantage of solution combustion and ammonia calcination (SCAC), to prepare a series of HENs (HPHENs) with hierarchical pores and adjustable compositions. SCAC route not only produces in situ hierarchically porous structure by solvent evaporation and organic combustion but also drives the oxide‐to‐nitride conversion without destroying hierarchical pores. Compared with other electrocatalysts, HPHEN with multiple structural and compositional synergies remarkably decreases reaction energy barrier of the key intermediate and accelerates reactants transport for adipic acid electrosynthesis from cyclohexanone. The best (NiCuCoZnFe) 4 N HPHEN holds recordable electrocatalytic performance, including 93.1% of Faradaic efficiency and 369.6 mmol h −1 g −1 of yield rate, all of which are superior than previously reported electrocatalysts. Meanwhile, high performance is also achieved in a flow reactor even with the long cycling time of 100 h, demonstrating its promise for practical applications. This work provides new insights into producing hierarchically porous high‐entropy materials for selective electrosynthesis of high‐value chemicals from various biomass sources.
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