Suppr超能文献

室温下高效氟化物催化 CO2 转化为 CO。

Efficient fluoride-catalyzed conversion of CO2 to CO at room temperature.

机构信息

The Center for Insoluble Protein Structures (inSPIN), the Interdisciplinary Nanoscience Center (iNANO) and Department of Chemistry, Aarhus University , Gustav Wieds Vej 14, 8000 Aarhus, Denmark.

出版信息

J Am Chem Soc. 2014 Apr 23;136(16):6142-7. doi: 10.1021/ja502911e. Epub 2014 Apr 15.

Abstract

A protocol for the efficient and selective reduction of carbon dioxide to carbon monoxide has been developed. Remarkably, this oxygen abstraction step can be performed with only the presence of catalytic cesium fluoride and a stoichiometric amount of a disilane in DMSO at room temperature. Rapid reduction of CO2 to CO could be achieved in only 2 h, which was observed by pressure measurements. To quantify the amount of CO produced, the reduction was coupled to an aminocarbonylation reaction using the two-chamber system, COware. The reduction was not limited to a specific disilane, since (Ph2MeSi)2 as well as (PhMe2Si)2 and (Me3Si)3SiH exhibited similar reactivity. Moreover, at a slightly elevated temperature, other fluoride salts were able to efficiently catalyze the CO2 to CO reduction. Employing a nonhygroscopic fluoride source, KHF2, omitted the need for an inert atmosphere. Substituting the disilane with silylborane, (pinacolato)BSiMe2Ph, maintained the high activity of the system, whereas the structurally related bis(pinacolato)diboron could not be activated with this fluoride methodology. Furthermore, this chemistry could be adapted to (13)C-isotope labeling of six pharmaceutically relevant compounds starting from Ba(13)CO3 in a newly developed three-chamber system.

摘要

已经开发出一种将二氧化碳高效且选择性还原为一氧化碳的方案。值得注意的是,在室温下,仅需催化氟化铯和化学计量的二硅烷存在于 DMSO 中,即可进行这种氧提取步骤。通过压力测量观察到,CO2 可以在短短 2 小时内快速还原为 CO。为了定量生成的 CO 量,还原过程与使用双通道系统 COware 的氨基羰基化反应耦合。还原不限于特定的二硅烷,因为(Ph2MeSi)2 以及(PhMe2Si)2 和(Me3Si)3SiH 表现出相似的反应性。此外,在稍高的温度下,其他氟化物盐能够有效地催化 CO2 还原为 CO。使用非吸湿性氟源 KHF2,省略了对惰性气氛的需求。用硅基硼烷(silylborane),(pinacolato)BSiMe2Ph 替代二硅烷,保持了该体系的高活性,而结构上相关的双(pinacolato)二硼则不能通过这种氟化物方法激活。此外,这种化学方法可以适应从 Ba(13)CO3 开始,在新开发的三通道系统中对六种具有药用相关性的化合物进行 (13)C 同位素标记。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验