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斯皮尔斯纪念讲座:用于绿色氨合成的分子氮催化活化:介绍与现状

Spiers Memorial Lecture: Catalytic activation of molecular nitrogen for green ammonia synthesis: introduction and current status.

作者信息

Hosono Hideo

机构信息

MDX Research Centre for Element Strategy, International Research Frontiers Initiative, Tokyo Institute of Technology, Midori, Yokohama 226-8503, Japan.

WPI-mana, National Institute for Materials Science, Tsukuba 305-0044, Japan.

出版信息

Faraday Discuss. 2023 Jul 19;243(0):9-26. doi: 10.1039/d3fd00070b.

Abstract

The efficient synthesis of ammonia using carbon-footprint-free hydrogen under mild conditions is a grand challenge in chemistry today. To achieve this objective, novel concepts are needed for the activation process and catalyst. This article briefly reviews catalytic activation of N for ammonia synthesis under mild conditions. The features of the various activation methods reported so far are summarized, looking chronologically back at progress in heterogeneous catalysts since the use of iron oxide for the Haber-Bosch process, and finally the technical challenges to be overcome are described. Establishing low work functions for the support materials of the metal catalysts is one key to reducing the activation barrier to dissociate N. Surfaces of electride materials that preserve the character of the bulk are shown to be useful for this purpose. The requirements of desired catalysts are high efficiency at low temperatures, Ru-free compositions, and chemical robustness in the ambient atmosphere.

摘要

在温和条件下利用无碳足迹氢气高效合成氨是当今化学领域的一项重大挑战。为实现这一目标,活化过程和催化剂需要新的概念。本文简要综述了温和条件下合成氨的氮催化活化。总结了迄今为止报道的各种活化方法的特点,按时间顺序回顾了自用于哈伯-博施法的氧化铁以来多相催化剂的进展,最后描述了有待克服的技术挑战。为金属催化剂的载体材料建立低功函数是降低氮解离活化能垒的关键之一。已表明保留体相性质的电子化物材料表面对此目的有用。理想催化剂的要求是低温下高效、无钌组成以及在环境大气中具有化学稳定性。

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