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在环境条件下通过甲酸分解高效生成亚纳米级金催化剂的氢气。

Efficient subnanometric gold-catalyzed hydrogen generation via formic acid decomposition under ambient conditions.

机构信息

Department of Chemistry, Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Fudan University, Shanghai 200433, P. R. China.

出版信息

J Am Chem Soc. 2012 May 30;134(21):8926-33. doi: 10.1021/ja301696e. Epub 2012 May 15.

Abstract

Formic acid (FA) has tremendous potential as a safe and convenient source of hydrogen for sustainable chemical synthesis and renewable energy storage, but controlled and efficient dehydrogenation of FA by a robust solid catalyst under ambient conditions constitutes a major challenge. Here, we report that a previously unappreciated combination of subnanometric gold and an acid-tolerant oxide support facilitates the liberation of CO-free H(2) from FA. Applying an ultradispersed gold catalyst comprising TEM-invisible gold subnanoclusters deposited on zirconia to a FA-amine mixture affords turnover frequencies (TOFs) up to 1590 per hour and a turnover number of more than 118,400 at 50 °C. The reaction was accelerated at higher temperatures, but even at room temperature, a significant H(2) evolution (TOFs up to 252 h(-1) after 20 min) can still be obtained. Preliminary mechanistic studies suggest that the reaction is unimolecular in nature and proceeds via a unique amine-assisted formate decomposition mechanism on Au-ZrO(2) interface.

摘要

甲酸(FA)作为一种安全、便捷的制氢来源,在可持续化学合成和可再生能源存储方面具有巨大的潜力,但在环境条件下通过稳定的固体催化剂来控制和高效地实现 FA 的脱氢仍然是一个重大挑战。在此,我们报告了亚纳米金与耐酸氧化物载体的协同作用可以促进 FA 中无 CO 的 H2 的释放。将包含 TEM 不可见的金亚纳米团簇的超分散金催化剂应用于 FA-胺混合物中,在 50°C 时可提供高达 1590 h-1 的周转频率(TOF)和超过 118,400 的周转数。该反应在较高温度下会加速,但即使在室温下,仍能获得显著的 H2 释放(20 min 后 TOF 高达 252 h-1)。初步的机理研究表明,该反应本质上是单分子反应,在 Au-ZrO2 界面上通过独特的胺辅助甲酸盐分解机制进行。

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