Electronic factors governing ethylene hydrogenation and dehydrogenation activity of pseudomorphic PdML/Re(0001), PdML/Ru(0001), Pd(111), and PdML/Au(111) surfaces

被引:346
作者
Pallassana, V [1 ]
Neurock, M [1 ]
机构
[1] Univ Virginia, Sch Engn & Appl Sci, Dept Chem Engn, Charlottesville, VA 22903 USA
基金
美国国家科学基金会;
关键词
ethylene; hydrogenation; dehydrogenation; bimetallic overlayers; palladium; chemisorption; ethyl; vinyl; density functional theory; Evans-Polanyi relation; LFER;
D O I
10.1006/jcat.1999.2724
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
DFT-GGA periodic slab calculations were used to examine the chemisorption, hydrogenation, and dehydrogenation of ethylene on pseudomorphic monolayers of Pd(lll) on Re(0001) [Pd-ML/Re(0001)], Pd-ML/Ru(0001), Pd(111), and Pd-ML/Au(111). The computed (root 3 x root 3) di-sigma binding energy for ethylene on Pd-ML/Re(00001), Pd-ML/Ru(0001), Pd(111), and Pd-ML/Au(111) are - 10, -31, -62, and -78 kJ/mol, respectively. Hydrogen chemisorption follows trends very similar to the adsorption of ethylene with calculated dissociative adsorption energies of +2, -6, -78, and -83 kJ/mol, on the Pd-ML/Re(00001), Pd-ML/Ru(0001), Pd(111), and Pd-ML/Au(111) surfaces, respectively. The elementary reactions of ethylene hydrogenation to form a surface ethyl intermediate and the dehydrogenation of ethylene to form a surface vinyl species were examined as model reactions for metal-catalyzed coupling and adsorbate bond-breaking reactions, respectively. Activation barriers and energies of reaction were computed for these elementary C-H bond-forming and C-H bond-breaking reactions over all the aforementioned surfaces. Calculations indicate that the activation barriers for the C-H bond breaking of surface-bound ethylene and ethyl intermediates correlate linearly with the corresponding overall energies of reaction for different Pd overlayer surfaces, with a slope of 0.65. The C-H bond activation barriers appear to be lower on surfaces where the reaction is more exothermic, consistent with the Evans-Polanyi postulate. Finally, we demonstrate that both the trends in the adsorption energy of ethylene and the activation barriers for hydrogenation/dehydrogenation of ethylene are correlated to the intrinsic electronic properties of the bare metal surface. Using concepts derived from frontier-orbital theory, we extend the simple surface-activity model developed by Hammer and Norskov (Surf. Sci. 343, 211 (1995)) to predict the chemisorption and surface reactivity of both ethylene and ethyl on different surfaces. The d-band for the bare Pd overlayer is observed shifting closer to the Fermi energy as the substrate metal is changed from a reactive metal such as Re to a noble metal such as Au. Since C-H bond activation of ethyl and ethylene is primarily guided by electron-backdonation to the antibonding sigma(CH*) orbital, the activation barriers for C-H bond breaking were found to be lower on surfaces where the d-band is closer to the Fermi level. The converse is true for the microscopic reverse, C-H bond formation reaction. (C) 2000 Academic Press.
引用
收藏
页码:301 / 317
页数:17
相关论文
共 90 条
[1]  
[Anonymous], 1987, MECH THEORY ORGANIC
[2]   SURFACE CRYSTALLOGRAPHY OF 3 CATALYTICALLY IMPORTANT STRUCTURES IN THE AU(111)-PD SYSTEM [J].
BADDELEY, CJ ;
BARNES, CJ ;
WANDER, A ;
ORMEROD, RM ;
KING, DA ;
LAMBERT, RM .
SURFACE SCIENCE, 1994, 314 (01) :1-12
[3]  
BAUER E, 1984, CHEM PHYSICS SOLID I
[4]   MECHANISM OF THE CONVERSION OF ETHENE TO ETHYLIDYNE ON RHODIUM(111) - EVIDENCE FOR A VINYLIC INTERMEDIATE [J].
BORG, HJ ;
VANHARDEVELD, RM ;
NIEMANTSVERDRIET, JWH .
JOURNAL OF THE CHEMICAL SOCIETY-FARADAY TRANSACTIONS, 1995, 91 (20) :3679-3684
[5]  
Boudart M., 2014, KINETICS HETEROGENEO
[6]   The adiabatic molecule-metal surface interaction: Theoretical approaches [J].
Brivio, GP ;
Trioni, MI .
REVIEWS OF MODERN PHYSICS, 1999, 71 (01) :231-265
[7]   ELECTRONIC-STRUCTURE CALCULATIONS AND DYNAMICS OF THE CHEMISORPTION OF METHANE ON A NI(111) SURFACE [J].
BURGHGRAEF, H ;
JANSEN, APJ ;
VANSANTEN, RA .
CHEMICAL PHYSICS, 1993, 177 (02) :407-420
[8]  
CAMPBELL CT, 1990, ANNU REV PHYS CHEM, V41, P775
[9]   CHEMICAL AND ELECTRONIC-PROPERTIES OF ULTRATHIN METAL-FILMS - THE PD/RE(0001) AND PD/RU(0001) SYSTEMS [J].
CAMPBELL, RA ;
RODRIGUEZ, JA ;
GOODMAN, DW .
PHYSICAL REVIEW B, 1992, 46 (11) :7077-7087
[10]   SPECIAL POINTS IN BRILLOUIN ZONE [J].
CHADI, DJ ;
COHEN, ML .
PHYSICAL REVIEW B, 1973, 8 (12) :5747-5753