Calcium adsorption on MgO(100): Energetics, structure, and role of defects

被引:49
作者
Zhu, Junfa [1 ]
Farmer, Jason A. [1 ]
Ruzycki, Nancy [1 ]
Xu, Lijun [2 ]
Campbell, Charles T. [1 ]
Henkelman, Graerne [2 ]
机构
[1] Univ Washington, Dept Chem, Seattle, WA 98195 USA
[2] Univ Texas Austin, Dept Chem & Biochem, Austin, TX 78712 USA
关键词
D O I
10.1021/ja077865y
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The adsorption of Ca on the MgO(100) surface at 300 K has been studied using microcalorimetry, in combination with LEED, AES, ISS, work function, sticking probability measurements, and density functional theory (DFT) calculations. The MgO(1 00) thin films (similar to 4 nm thick) were grown epitaxially on a 1 mu m thick Mo(100) single-crystal. The sticking probability of Ca on MgO(100) at 300 K is unity. On the basis of AES and ISS measurements, it was determined that Ca grows mainly as 3D particles on the MgO(100) surface with a density of similar to 1 X 10(12) islands/cm(2). Ca adsorbs initially at defect sites with a very high heat of adsorption (similar to 410 kJ/mol). DFT calculations attribute this high initial heat to Ca binding to kink sites (376 kJ/mol), step sites (205 kJ/mol), and lower concentrations of stronger binding sites. The heat of adsorption decreases rapidly with coverage, reaching a minimum of 162 kJ/mol at similar to 0.3 ML, where Ca is mainly adding to small 3D Ca clusters. Afterward, it increases to the value of bulk Ca heat of sublimation (178 kJ/mol) at similar to 1.2 ML, attributed to the increase in stability with increasing Ca particle size. A 1.0 eV decrease of the work function with Ca coverage from 0 to 0.3 ML indicates that Ca adsorbed at defects is cationic, in agreement with calculations showing that Ca donates electron density to the MgO. Light ion sputtering of the MgO(100) surface generates point defects, but these do not change the heat of adsorption versus coverage, implying that they do not nucleate Ca particles. Oxygen vacancies are a likely candidate; DFT calculations show that F and F+ center vacancies bind Ca more weakly than terrace sites. More extensive sputtering creates extended defects (such as steps and kinks) that adsorb Ca with heats of adsorption up to similar to 400 kJ/mol, similar to that at the intrinsic defect sites.
引用
收藏
页码:2314 / 2322
页数:9
相关论文
共 85 条
[31]   Characteristics of Pd adsorption on the MgO(100) surface: Role of oxygen vacancies [J].
Giordano, L ;
Goniakowski, J ;
Pacchioni, G .
PHYSICAL REVIEW B, 2001, 64 (07) :754171-754179
[32]   Adsorption of benzene on Mo(100) and MgO(100)/Mo(100) studied by ultraviolet photoelectron and metastable impact electron spectroscopies [J].
Gunster, J ;
Liu, G ;
Kempter, V ;
Goodman, DW .
SURFACE SCIENCE, 1998, 415 (03) :303-311
[33]   Water and methanol adsorption on MgO(100)/Mo(100) studied by electron spectroscopies and thermal programmed desorption [J].
Günster, J ;
Liu, G ;
Stultz, J ;
Krischok, S ;
Goodman, DW .
JOURNAL OF PHYSICAL CHEMISTRY B, 2000, 104 (24) :5738-5743
[34]   FLEXIBLE LIGHT-EMITTING-DIODES MADE FROM SOLUBLE CONDUCTING POLYMERS [J].
GUSTAFSSON, G ;
CAO, Y ;
TREACY, GM ;
KLAVETTER, F ;
COLANERI, N ;
HEEGER, AJ .
NATURE, 1992, 357 (6378) :477-479
[35]   Nucleation and growth of supported clusters at defect sites: Pd/MgO(001) [J].
Haas, G ;
Menck, A ;
Brune, H ;
Barth, JV ;
Venables, JA ;
Kern, K .
PHYSICAL REVIEW B, 2000, 61 (16) :11105-11108
[36]   A climbing image nudged elastic band method for finding saddle points and minimum energy paths [J].
Henkelman, G ;
Uberuaga, BP ;
Jónsson, H .
JOURNAL OF CHEMICAL PHYSICS, 2000, 113 (22) :9901-9904
[37]   A fast and robust algorithm for Bader decomposition of charge density [J].
Henkelman, Graeme ;
Arnaldsson, Andri ;
Jonsson, Hannes .
COMPUTATIONAL MATERIALS SCIENCE, 2006, 36 (03) :354-360
[38]  
Henry CR, 1998, SURF SCI REP, V31, P235
[39]   GROWTH AND MORPHOLOGY OF PALLADIUM PARTICLES EPITAXIALLY DEPOSITED ON A MGO(100) SURFACE [J].
HENRY, CR ;
CHAPON, C ;
DURIEZ, C ;
GIORGIO, S .
SURFACE SCIENCE, 1991, 253 (1-3) :177-189
[40]   Characterization of Ca-promoted Ni/α-Al2O3 catalyst for CH4 reforming with CO2 [J].
Hou, ZY ;
Yokota, O ;
Tanaka, T ;
Yashima, T .
APPLIED CATALYSIS A-GENERAL, 2003, 253 (02) :381-387