Electronic Structure-Reactivity Relationship on Ruthenium Step-Edge Sites from Carbonyl 13C Chemical Shift Analysis

被引:10
作者
Foppa, Lucas [1 ]
Yamamoto, Keishi [1 ]
Liao, Wei-Chih [1 ]
Comas-Vives, Aleix [1 ]
Coperet, Christophe [1 ]
机构
[1] Swiss Fed Inst Technol, Dept Chem & Appl Biosci, Vladimir Prelog Weg 1-5, CH-8093 Zurich, Switzerland
基金
瑞士国家科学基金会;
关键词
NUCLEAR-MAGNETIC-RESONANCE; INITIO MOLECULAR-DYNAMICS; DENSITY-FUNCTIONAL THEORY; X-RAY-STRUCTURE; SHIELDING TENSORS; CO CHEMISORPTION; METATHESIS CATALYSTS; NMR; DISSOCIATION; SURFACE;
D O I
10.1021/acs.jpclett.8b01332
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Ru nanoparticles are highly active catalysts for the Fischer-Tropsch and the Haber-Bosch processes. They show various types of surface sites upon CO adsorption according to NMR spectroscopy. Compared to terminal and bridging ill adsorption modes on terraces or edges, little is known about side-on 172 CO species coordinated to B-5 or B-6 step-edges, the proposed active sites for CO and N-2 cleavage. By using solid-state NMR and DFT calculations, we analyze C-13 chemical shift tensors (CSTs) of carbonyl ligands on the molecular cluster model for Ru nanoparticles, Ru-6(eta(2)-mu(4)-CO)(2)(CO)(13)(eta(6)-C6Me6), and show that, contrary to eta(1) carbonyls, the CST principal components parallel to the C-O bond are extremely deshielded in the eta(2) species due to the population of the C-O pi* antibonding orbital, which weakens the bond prior to dissociation. The carbonyl CST is thus an indicator of the reactivity of both Ru clusters and Ru nanoparticles step-edge sites toward C-O bond cleavage.
引用
收藏
页码:3348 / 3353
页数:11
相关论文
共 65 条
[1]   THE 1ST ISOLATION OF AN INTERMEDIATE IN THE FORMATION OF A HEXARUTHENIUM CARBIDO-CLUSTER FROM THE REACTION OF [RU3(CO)12] - X-RAY STRUCTURE ANALYSES OF [RU6(ETA-2-MU-4-CO)2(CO)13(ETA-6-C6H3ME3)] AND [HRU6(ETA-2-MU-4-CO)(CO)13(ETA-7-MU-2-C6H3ME2CH2)] [J].
ANSON, CE ;
BAILEY, PJ ;
CONOLE, G ;
JOHNSON, BFG ;
LEWIS, J ;
MCPARTLIN, M ;
POWELL, HR .
JOURNAL OF THE CHEMICAL SOCIETY-CHEMICAL COMMUNICATIONS, 1989, (07) :442-444
[2]   Understanding substituent effects on 29Si chemical shifts and bonding in disilenes.: A quantum chemical analysis [J].
Auer, D ;
Strohmann, C ;
Arbuznikov, AV ;
Kaupp, M .
ORGANOMETALLICS, 2003, 22 (12) :2442-2449
[3]   Analyzing Pt chemical shifts calculated from relativistic density functional theory using localized orbitals: The role of Pt 5d lone pairs [J].
Autschbach, Jochen ;
Zheng, Shaohui .
MAGNETIC RESONANCE IN CHEMISTRY, 2008, 46 (S45-S55) :S45-S55
[4]   Analyzing NMR shielding tensors calculated with two-component relativistic methods using spin-free localized molecular orbitals [J].
Autschbacha, Jochen .
JOURNAL OF CHEMICAL PHYSICS, 2008, 128 (16)
[5]   Adsorption and dissociation of NO on stepped Pt(533) [J].
Backus, EHG ;
Eichler, A ;
Grecea, ML ;
Kleyn, AW ;
Bonn, M .
JOURNAL OF CHEMICAL PHYSICS, 2004, 121 (16) :7946-7954
[6]   CARBIDE FORMING AND CLUSTER BUILDUP REACTIONS IN RUTHENIUM CARBONYL CLUSTER CHEMISTRY [J].
BAILEY, PJ ;
DUER, MJ ;
JOHNSON, BFG ;
LEWIS, J ;
CONOLE, G ;
MCPARTLIN, M ;
POWELL, HR ;
ANSON, CE .
JOURNAL OF ORGANOMETALLIC CHEMISTRY, 1990, 383 (1-3) :441-461
[7]   The preparation, characterisation and low temperature x-ray structure of Ru-6(eta(2)-mu(4)-CO)(2)(CO)(13)(eta(6)-C(6)Me(6)) [J].
Blake, AJ ;
Dyson, PJ ;
Ingham, SL ;
Johnson, BFG ;
Martin, CM .
INORGANICA CHIMICA ACTA, 1995, 240 (1-2) :29-32
[8]   Natural chemical shielding analysis of nuclear magnetic resonance shielding tensors from gauge-including atomic orbital calculations [J].
Bohmann, JA ;
Weinhold, F ;
Farrar, TC .
JOURNAL OF CHEMICAL PHYSICS, 1997, 107 (04) :1173-1184
[9]   INFRARED STUDY OF ADSORPTION OF CARBON-MONOXIDE ON REDUCED AND OXIDIZED FORMS OF SILICA SUPPORTED RUTHENIUM [J].
BROWN, MF ;
GONZALEZ, RD .
JOURNAL OF PHYSICAL CHEMISTRY, 1976, 80 (15) :1731-1735
[10]   FTIR studies of CO adsorption on Al2O3- and SiO2-supported Ru catalysts [J].
Chin, SY ;
Williams, CT ;
Amiridis, MD .
JOURNAL OF PHYSICAL CHEMISTRY B, 2006, 110 (02) :871-882