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氧化物负载的 Au25(SR)18 纳米团簇催化的 CO 氧化反应及边界位作为活性中心的鉴定。

CO oxidation catalyzed by oxide-supported Au25(SR)18 nanoclusters and identification of perimeter sites as active centers.

机构信息

Dalian National Laboratory for Clean Energy, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian 116023, China.

出版信息

ACS Nano. 2012 Jul 24;6(7):6014-22. doi: 10.1021/nn301019f. Epub 2012 Jun 12.

Abstract

In this work, we explore the catalytic application of atomically monodisperse, thiolate-protected Au(25)(SR)(18) (where R = CH(2)CH(2)Ph) nanoclusters supported on oxides for CO oxidation. The solution phase nanoclusters were directly deposited onto various oxide supports (including TiO(2), CeO(2), and Fe(2)O(3)), and the as-prepared catalysts were evaluated for the CO oxidation reaction in a fixed bed reactor. The supports exhibited a strong effect, and the Au(25)(SR)(18)/CeO(2) catalyst was found to be much more active than the others. Interestingly, O(2) pretreatment of the catalyst at 150 °C for 1.5 h significantly enhanced the catalytic activity. Since this pretreatment temperature is well below the thiolate desorption temperature (~200 °C), the thiolate ligands should remain on the Au(25) cluster surface, indicating that the CO oxidation reaction is catalyzed by intact Au(25)(SR)(18)/CeO(2). We further found that increasing the O(2) pretreatment temperature to 250 °C (above the thiolate desorption temperature) did not lead to any further increase in activity at all reaction temperatures from room temperature to 100 °C. These results are in striking contrast with the common thought that surface thiolates must be removed-as is often done in the literature work-before the catalyst can exert high catalytic activity. The 150 °C O(2)-pretreated Au(25)(SR)(18)/CeO(2) catalyst offers ~94% CO conversion at 80 °C and ~100% conversion at 100 °C. The effect of water vapor on the catalytic performance is also investigated. Our results imply that the perimeter sites of the interface of Au(25)(SR)(18)/CeO(2) should be the active centers. The intact structure of the Au(25)(SR)(18) catalyst in the CO oxidation process allows one to gain mechanistic insight into the catalytic reaction.

摘要

在这项工作中,我们探索了原子分散的、硫醇保护的 Au(25)(SR)(18)(其中 R = CH(2)CH(2)Ph)纳米团簇在氧化物上作为催化剂用于 CO 氧化的催化应用。将溶液相纳米团簇直接沉积在各种氧化物载体(包括 TiO(2)、CeO(2)和 Fe(2)O(3))上,并在固定床反应器中评估所制备的催化剂对 CO 氧化反应的活性。载体表现出很强的效果,发现 Au(25)(SR)(18)/CeO(2)催化剂比其他催化剂活性更高。有趣的是,催化剂在 150°C 下用 O(2)预处理 1.5 小时显著增强了催化活性。由于该预处理温度远低于硫醇解吸温度(~200°C),硫醇配体应该保留在 Au(25)簇表面上,表明 CO 氧化反应是由完整的 Au(25)(SR)(18)/CeO(2)催化的。我们进一步发现,将 O(2)预处理温度提高到 250°C(高于硫醇解吸温度),在室温至 100°C 的所有反应温度下,活性都没有任何进一步提高。这些结果与普遍的观点形成鲜明对比,普遍认为在催化剂发挥高催化活性之前,必须去除表面硫醇-这在文献工作中经常进行。150°C O(2)预处理的 Au(25)(SR)(18)/CeO(2)催化剂在 80°C 时提供约 94%的 CO 转化率,在 100°C 时提供 100%的转化率。还研究了水蒸气对催化性能的影响。我们的结果表明,Au(25)(SR)(18)/CeO(2)界面的边界位点应该是活性中心。在 CO 氧化过程中,完整的 Au(25)(SR)(18)催化剂结构使人们能够深入了解催化反应的机理。

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