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一种含有 PNP 型钳形配体的钼配合物导致氮气催化还原为氨。

A molybdenum complex bearing PNP-type pincer ligands leads to the catalytic reduction of dinitrogen into ammonia.

机构信息

Institute of Engineering Innovation, School of Engineering, The University of Tokyo, Yayoi, Bunkyo-ku, Tokyo 113-8656, Japan.

出版信息

Nat Chem. 2011 Feb;3(2):120-5. doi: 10.1038/nchem.906. Epub 2010 Dec 5.

Abstract

The synthesis of transition metal-dinitrogen complexes and the stoichiometric transformation of their coordinated dinitrogen into ammonia and hydrazine have been the subject of considerable research, with a view to achieving nitrogen fixation under ambient conditions. Since a single example in 2003, no examples have been reported of the catalytic conversion of dinitrogen into ammonia under ambient conditions. The dimolybdenum-dinitrogen complex bearing PNP pincer ligands was found to work as an effective catalyst for the formation of ammonia from dinitrogen, with 23 equiv. of ammonia being produced with the catalyst (12 equiv. of ammonia are produced based on the molybdenum atom of the catalyst). This is another successful example of the catalytic and direct conversion of dinitrogen into ammonia under ambient reaction conditions. We believe that the results described in this Article provide valuable information with which to develop a more effective nitrogen-fixation system under mild reaction conditions.

摘要

过渡金属-二氮配合物的合成以及其配位二氮向氨和联氨的化学计量转化一直是相当多研究的主题,目的是实现在环境条件下固氮。自 2003 年的一个单一实例以来,没有报道过在环境条件下催化转化二氮为氨的实例。含 PNP 钳形配体的二钼-二氮配合物被发现是一种有效的催化剂,可将二氮转化为氨,用该催化剂可生成 23 当量的氨(基于催化剂的钼原子可生成 12 当量的氨)。这是在环境反应条件下催化和直接转化二氮为氨的又一个成功实例。我们相信,本文所述的结果为在温和反应条件下开发更有效的固氮体系提供了有价值的信息。

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