H2 Oxidation over Supported Au Nanoparticle Catalysts: Evidence for Heterolytic H2 Activation at the Metal-Support Interface

被引:117
|
作者
Whittaker, Todd [1 ]
Kumar, K. B. Sravan [2 ]
Peterson, Christine [1 ]
Pollock, Meagan N. [1 ]
Grabow, Lars C. [2 ]
Chandler, Bert D. [1 ]
机构
[1] Trinity Univ, Dept Chem, San Antonio, TX 78212 USA
[2] Univ Houston, Dept Chem & Biomol Engn, Houston, TX 77204 USA
基金
美国国家科学基金会;
关键词
TOTAL-ENERGY CALCULATIONS; LEWIS PAIR CHEMISTRY; CO OXIDATION; CHEMOSELECTIVE HYDROGENATION; SELECTIVE HYDROGENATION; H/D EXCHANGE; PREFERENTIAL OXIDATION; SPILLOVER HYDROGEN; C=O HYDROGENATION; GOLD CATALYSTS;
D O I
10.1021/jacs.8b04991
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Water adsorbed at the metal-support interface (MSI) plays an important role in multiple reactions. Due to its importance in CO preferential oxidation (PrOx), we examined H-2 oxidation kinetics in the presence of water over Au/TiO2 and Au/Al2O3 catalysts, reaching the following mechanistic conclusions: (i) O-2 activation follows a similar mechanism to that proposed in CO oxidation catalysis; (ii) weakly adsorbed H2O is a strong reaction inhibitor; (iii) fast H-2 activation occurs at the MSI, and (iv) H-2 activation kinetics are inconsistent with traditional dissociative H-2 chemisorption on metals. Density functional theory (DFT) calculations using a supported Au nanorod model suggest H-2 activation proceeds through a heterolytic dissociation mechanism, resulting in a formal hydride residing on the Au and a proton bound to a surface TiOH group. This potential mechanism was supported by infrared spectroscopy experiments during H-2 adsorption on a deuterated Au/TiO2 surface, which showed rapid H-D scrambling with surface hydroxyl groups. DFT calculations suggest that the reaction proceeds largely through proton-mediated pathways and that typical Bronsted-Evans Polanyi behavior is broken by introducing weak acid/base sites at the MSI. The kinetics data were successfully reinterpreted in the context of the heterolytic H-2 activation mechanism, tying together the experimental and computational evidence and rationalizing the observed inhibition by physiorbed water on the support as blocking the MSI sites required for heterolytic H-2 activation. In addition to providing evidence for this unusual H-2 activation mechanism, these results offer additional insight into why water dramatically improves CO PrOx catalysis over Au.
引用
收藏
页码:16469 / 16487
页数:19
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