4.8 Article

Confined Pt11+ Water Clusters in a MOF Catalyze the Low-Temperature Water-Gas Shift Reaction with both CO2 Oxygen Atoms Coming from Water

期刊

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
卷 57, 期 52, 页码 17094-17099

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.201810251

关键词

metal-organic frameworks (MOFs); platinum; single-atom catalyst; water clusters; water-gas shift reaction

资金

  1. MINECO (Spain) [CTQ2016-75671-P, MAT2013 40823-R, MAT2016-81732-ERC, CTQ2017-86735-P, MAT2017-86992-R, MAT2017-82288-C2-1-P]
  2. Generalitat Valenciana [PROMETEOII/2014/004]
  3. Ministero dell'Istruzione, dell'Universita e della Ricerca (Italy)
  4. Junta de Andalucia [FQM-195]
  5. Juan de la Cierva Fellowships Program of MINECO [IJCI-2014-19367]
  6. MINECO (Spain) (Excellence Unit Severo Ochoa)
  7. MINECO (Spain) (Excellence Unit Maria de Maeztu [SEV-2016-0683, MDM-2015-0538]

向作者/读者索取更多资源

The synthesis and reactivity of single metal atoms in a low-valence state bound to just water, rather than to organic ligands or surfaces, is a major experimental challenge. Herein, we show a gram-scale wet synthesis of Pt-1(1+) stabilized in a confined space by a crystallographically well-defined first water sphere, and with a second coordination sphere linked to a metal-organic framework (MOF) through electrostatic and H-bonding interactions. The role of the water cluster is not only isolating and stabilizing the Pt atoms, but also regulating the charge of the metal and the adsorption of reactants. This is shown for the low-temperature water-gas shift reaction (WGSR: CO + H2O CO2 + H-2), where both metal coordinated and H-bonded water molecules trigger a double water attack mechanism to CO and give CO2 with both oxygen atoms coming from water. The stabilized Pt1+ single sites allow performing the WGSR at temperatures as low as 50 degrees C.

作者

我是这篇论文的作者
点击您的名字以认领此论文并将其添加到您的个人资料中。

评论

主要评分

4.8
评分不足

次要评分

新颖性
-
重要性
-
科学严谨性
-
评价这篇论文

推荐

暂无数据
暂无数据