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Photocatalytic nitrogen fixation: An attractive approach for artificial photocatalysis 被引量:12
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作者 Rengui Li 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第7期1180-1188,共9页
Ammonia synthesis via the Haber-Bosch process, which has been heralded as the most important invention of the 20 th century, consumes massive amounts of energy, around 1%–2% of the world’s annual energy... Ammonia synthesis via the Haber-Bosch process, which has been heralded as the most important invention of the 20 th century, consumes massive amounts of energy, around 1%–2% of the world’s annual energy consumption. Developing green and sustainable strategies for NH3 synthesis under ambient conditions, using renewable energy, is strongly desired, by both industrial and sci-entific researchers. Artificial photosynthesis for ammonia synthesis, which has recently attracted significant attention, directly produces NH3 from sunlight, and N2 and H2O via photocatalysis. This has been regarded as an ideal, energy-saving and environmentally-benign process for NH3 produc-tion because it can be performed under normal temperature and atmospheric pressure using re-newable solar energy. Although sustainable developments have been achieved since the pioneering work in 1977, many challenging issues(e.g., adsorption and activation of nitrogen molecules on the surface of photocatalysts under mild conditions) have still not been well solved and the photocata-lytic activities are generally low. In this miniature review, I summarize the most recent progress of photocatalytic N2 fixation for ammonia synthesis, focusing specifically on two attractive aspects for adsorption and activation of nitrogen molecules: one is engineering of oxygen vacancies, and the other is mimicking natural nitrogenase for constructing artificial systems for N2 fixation. Several representative works focusing on these aspects in artificial systems have been reported recently, and it has been demonstrated that both factors play more significant roles in photocatalytic N2 re-duction and fixation under ambient conditions. At the end of the review, I also give some remarks and perspective on the existing challenges and future directions in this field. 展开更多
关键词 PHOTOCATALYSIS Nitrogen fixation Ammonia synthesis Artificial photosynthesis
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基于建模进行化学反应调控的深度教学
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作者 李国成 李金燕 《中学化学教学参考》 2023年第27期33-35,共3页
以“人工合成氨”为原型,从知识原点出发,引导学生从学科本质角度思考人工合成氨:为什么要人工合成氨?如何人工合成氨?基于建模关联热力学原理、动力学原理以及作用机理,围绕“快出产品”“多出产品”“出好产品”的制备思路建构化学反... 以“人工合成氨”为原型,从知识原点出发,引导学生从学科本质角度思考人工合成氨:为什么要人工合成氨?如何人工合成氨?基于建模关联热力学原理、动力学原理以及作用机理,围绕“快出产品”“多出产品”“出好产品”的制备思路建构化学反应调控的一般思路,在解决陌生的反应调控问题时,进行情境关联、分析评价、系统探究,实现从孤立到系统思维的进阶。 展开更多
关键词 建模教学 人工合成氨 化学反应调控 深度教学
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