催化作用
材料科学
碳纤维
钡
碳酸钡
碳纳米管
柠檬酸
氧化物
无机化学
化学工程
纳米颗粒
钴
多相催化
纳米技术
有机化学
化学
复合材料
原材料
冶金
工程类
复合数
作者
K. Kanishka H. De Silva,Katsutoshi Sato,T. Naito,Takaaki Toriyama,Tomokazu Yamamoto,Ryotaro Aso,Yasukazu Murakami,Pradeep R. Varadwaj,Ryoji Asahi,Koji Inazu,Katsutoshi Nagaoka
标识
DOI:10.1002/aenm.202404030
摘要
Abstract Developing non‐noble metal catalysts with excellent NH 3 synthesis activity under mild conditions is a long‐term goal. The best catalysts reported to date often require laborious fabrication methods and controlled environments to fabricate the catalysts or high temperatures and long times to activate the catalysts. This work introduces a facile one‐pot method to fabricate carbon (C)‐based, barium (Ba)‐promoted cobalt (Co) catalysts via the citric acid sol–gel method with metal nitrates as precursors and water as the solvent. This approach ensures the homogeneous incorporation of metal ions into the carbon framework. The resulting (Ba/Co) 0.3 /C catalyst demonstrates an outstanding NH 3 synthesis activity of 34 mmol g cat −1 h −1 (350 °C, 1.0 MPa) with excellent stability. In‐depth characterizations reveal that Ba exists as barium oxide (BaO), uniformly distributed on the carbon framework and around the Co nanoparticles. It is uncovered that retarding barium carbonate (BaCO 3 ) formation in the fresh catalyst significantly reduces the reduction temperature and time (485 °C/4 h), which is a fundamental advantage of this method. Density functional theory and molecular dynamics simulations indeed support the experimental observations. It is anticipated that this simple and economical strategy will resolve the issues in a broad field of heterogeneous catalyst research.
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