State-resolved reactivity of CH4 on Pt(110)-(1x2): The role of surface orientation and impact site

被引:41
作者
Bisson, Regis [1 ]
Sacchi, Marco [1 ]
Beck, Rainer D. [1 ]
机构
[1] Ecole Polytech Fed Lausanne, Lab Chim Phys Mol, CH-1015 Lausanne, Switzerland
基金
瑞士国家科学基金会;
关键词
chemisorption; dissociation; organic compounds; platinum; reaction kinetics; surface chemistry; translational states; vibrational states; DISSOCIATIVE ADSORPTION; MOLECULAR-BEAMS; DYNAMICS; CHEMISORPTION; METHANE; PT(111); MODEL; X-2);
D O I
10.1063/1.3328885
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
The reactivity of methane (CH4) on Pt(110)-(1x2) has been studied by quantum state-resolved surface reactivity measurements. Ground state reaction probabilities, S-0(v=0)congruent to S-0(laser-off), as well as state-resolved reaction probabilities S-0(2 nu(3)), for CH4 excited to the first overtone of the antisymmetric C-H stretch (2 nu(3)) have been measured at incident translational energies in the range of 4-64 kJ/mol. We observe S-0(2 nu(3)) to be up to three orders of magnitude higher than S-0(v=0), demonstrating significant vibrational activation of CH4 dissociation on Pt(110)-(1x2) by 2 nu(3) excitation. Furthermore, we explored the azimuthal and polar incident angle dependence of S-0(2 nu(3)) and S-0(v=0) for a fixed incident translational energy E-t=32 kJ/mol. For incidence perpendicular to the missing row direction on Pt(110)-(1x2) and polar angles theta>40 degrees, shadowing effects prevent the incident CH4 molecules from impinging into the trough sites. Comparison of this polar angle dependence with reactivity data for incidence parallel to the missing rows yields state-resolved site specific reactivity information consistent with a Pt(110)-(1x2) reactivity that is dominated by top layer Pt atoms located at the ridge sites. A comparison of S-0(v=0) measured on Pt(110)-(1x2) and Pt(111) yields a lower average barrier for Pt(110)-(1x2) by 13.7 +/- 2.0 kJ/mol.
引用
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页数:9
相关论文
共 34 条
[1]   Pathways for dissociative methane chemisorption on Pt{110}-(1x2) [J].
Anghel, AT ;
Wales, DJ ;
Jenkins, SJ ;
King, DA .
PHYSICAL REVIEW B, 2005, 71 (11)
[2]   Pathways for dissociative ethane chemisorption on Pt{110} (1x2) using density functional theory [J].
Anghel, AT ;
Wales, DJ ;
Jenkins, SJ ;
King, DA .
CHEMICAL PHYSICS LETTERS, 2005, 413 (4-6) :289-293
[3]   Vibrational mode-specific reaction of methane on a nickel surface [J].
Beck, RD ;
Maroni, P ;
Papageorgopoulos, DC ;
Dang, TT ;
Schmid, MP ;
Rizzo, TR .
SCIENCE, 2003, 302 (5642) :98-100
[4]   Core level shifts of undercoordinated Pt atoms [J].
Bianchettin, Laura ;
Baraldi, Alessandro ;
de Gironcoli, Stefano ;
Vesselli, Erik ;
Lizzit, Silvano ;
Petaccia, Luca ;
Comelli, Giovanni ;
Rosei, Renzo .
JOURNAL OF CHEMICAL PHYSICS, 2008, 128 (11)
[5]   State-resolved reactivity of CH4(2ν3) on Pt(111) and Ni(111):: Effects of barrier height and transition state location [J].
Bisson, R. ;
Sacchi, M. ;
Dang, T. T. ;
Yoder, B. ;
Maroni, P. ;
Beck, R. D. .
JOURNAL OF PHYSICAL CHEMISTRY A, 2007, 111 (49) :12679-12683
[6]   Vibrational activation in direct and precursor-mediated chemisorption of SiH4 on Si(100) [J].
Bisson, Regis ;
Dang, Tung T. ;
Sacchi, Marco ;
Beck, Rainer D. .
JOURNAL OF CHEMICAL PHYSICS, 2008, 129 (08)
[7]   The dissociation of diatomic molecules at surfaces [J].
Darling, GR ;
Holloway, S .
REPORTS ON PROGRESS IN PHYSICS, 1995, 58 (12) :1595-1672
[8]   Using effusive molecular beams and microcanonical unimolecular rate theory to characterize CH4 dissociation on Pt(111) [J].
DeWitt, KM ;
Valadez, L ;
Abbott, HL ;
Kolasinski, KW ;
Harrison, I .
JOURNAL OF PHYSICAL CHEMISTRY B, 2006, 110 (13) :6705-6713
[9]   THE CHEMISORPTION OF HYDROGEN ON THE (111) AND (110)-(1X2) SURFACES OF IRIDIUM AND PLATINUM [J].
ENGSTROM, JR ;
TSAI, W ;
WEINBERG, WH .
JOURNAL OF CHEMICAL PHYSICS, 1987, 87 (05) :3104-3119
[10]   Electronic factors determining the reactivity of metal surfaces [J].
Hammer, B ;
Norskov, JK .
SURFACE SCIENCE, 1995, 343 (03) :211-220