Work function of metals
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[1] T. Rhodin,et al. Atomic Binding of Transition Metals on Clean Single‐Crystal Tungsten Surfaces , 1968 .
[2] J. Yates,et al. Interactions between Chemisorbed Species: H2 and CO on (100) Tungsten , 1971 .
[3] R. Maly. Improved FEM for Precise Evaluation of Rapid Changes in Work Function , 1973 .
[4] S. C. Hunter,et al. CXI. Electrical interaction of a dislocation and a solute atom , 1953 .
[5] B. Lundqvist,et al. Exchange and correlation in atoms, molecules, and solids by the spin-density-functional formalism , 1976 .
[6] E. Bauer,et al. The early stages of condensation of lead on tungsten , 1975 .
[7] W. Kohn,et al. Density Functional Theory of Chemisorption on Metal Surfaces. , 1975 .
[8] G. Ertl,et al. Interaction of hydrogen with Pt(111): The role of atomic steps , 1976 .
[9] E. Bauer,et al. The adsorption and early stages of condensation of Ag and Au on W single-crystal surfaces , 1977 .
[10] Veljko Radeka,et al. Stress Dependence of Contact Potential: The ac Kelvin Method , 1970 .
[11] F. Witteborn,et al. Experimental comparison of the gravitational force on freely falling electrons and metallic electrons. , 1967 .
[12] G. E. Becker,et al. Orbital energy spectra of electrons in chemisorption bonds: O, S, Se ON Ni(110) and Ni(111) , 1972 .
[13] R. Gomer,et al. Adsorption of Potassium on Tungsten: Measurements on Single‐Crystal Planes , 1966 .
[14] C. Mee,et al. Oxygen Adsorption on the (111) Face of Silver , 1973, May 16.
[15] G. Somorjai,et al. Low energy electron diffraction and work function change studies of the adsorption of substituted aromatic molecules on the (111) and (100) crystal faces of platinum , 1974 .
[16] D. Fehrs,et al. Contact-potential measurements of the adsorption of I2, Br2, and Cl2 on bare and cesiated W (100)☆ , 1969 .
[17] J. Topping. On the mutual potential energy of a plane network of doublets , 1927 .
[18] E. Wigner. On the Interaction of Electrons in Metals , 1934 .
[19] T. Lee,et al. A two frequency vibrating capacitor method for contact potential difference measurements , 1969 .
[20] B. Hopkins,et al. An a.c. retarding potential technique for the continuous measurement of changes in work function , 1974 .
[21] Irving Langmuir,et al. VAPOR PRESSURES, EVAPORATION, CONDENSATION AND ADSORPTION , 1932 .
[22] John D. Smith. Beyond the local-density approximation - Surface properties of /110/ W , 1970 .
[23] G. Ertl,et al. Coadsorption of hydrogen and carbon monoxide on a Pd (110) surface , 1974 .
[24] F. Williams,et al. Binary alloy surface compositions from bulk alloy thermodynamic data , 1974 .
[25] H. B. Huntington,et al. Binding of an adatom to a simple metal surface , 1975 .
[26] D. Fehrs,et al. Contact potential measurements of the adsorption of alkali metals on Ta(llO) and W(100) crystals , 1971 .
[27] John C. Slater,et al. Quantum Theory of Molecules and Solids , 1951 .
[28] Lord Kelvin,et al. V. Contact electricity of metals , 1898 .
[29] V. Ponec,et al. Ethylene adsorption on thin films of Ni, Pd, Pt, Cu, Au and Al; Work function measurements , 1975 .
[30] N. D. Lang. The Density-Functional Formalism and the Electronic Structure of Metal Surfaces , 1974 .
[31] G. Ertl,et al. Soft-X-Ray Appearance Potential Spectra of Ni/Cu Alloys , 1972 .
[32] C. Papageorgopoulos,et al. Coadsorption of cesium and oxygen on Ni(100): I. Cesium probing of NiO bonding , 1975 .
[33] V. Ponec,et al. Photoelectric work function measurements on nickel-copper and nickel-gold alloy films: Clean surfaces and adsorption of ethylene and carbon monoxide , 1976 .
[34] R. D. Young,et al. Field-Emission Studies of Electronic Energy Levels of Adsorbed Atoms , 1970 .
[35] W. Sachtler,et al. The surface of copper-nickel alloy films: I. Work function and phase composition☆ , 1965 .
[36] V. Ponec. Selectivity in catalysis by alloys , 1975 .
[37] Walter Kohn,et al. Theory of Metal Surfaces: Charge Density and Surface Energy , 1970 .
[38] P. Craig. Direct Observation of Stress-Induced Shifts in Contact Potentials , 1969 .
[39] C. Papageorgopoulos,et al. Cesium enhanced oxidation of Ni(100) , 1973 .
[40] R. E. Thomas,et al. Distribution of Crystal Orientation and Work Function in Tungsten Ribbons , 1969 .
[41] W. J. Thomas,et al. Electronegativities of the Elements , 1956 .
[42] U. Kawabe,et al. Work functions of binary compounds , 1974 .
[43] A device for measuring contact potential differences with high spatial resolution , 1977 .
[44] W. Sachtler,et al. Photoelectric emission and phase transitions of evaporated metastable sodium, potassium and sodium-potassium alloy films , 1972 .
[45] J. Lambe,et al. Observation of Electron Standing Waves in a Crystalline Box , 1971 .
[46] W. Spicer,et al. Photoemission study of the oxidation of copper films , 1974 .
[47] W. Sachtler,et al. The changes in work function of group Ib and VIII metals on xenon adsorption, determined by field electron and photoelectron emission , 1974 .
[48] E. Bauer,et al. Adsorption of oxygen on W(100): Adsorption kinetics and structure , 1976 .
[49] G. Paasch,et al. Surface Energies of Simple Metals (II) , 1975 .
[50] H. Engelhardt,et al. Adsorption of oxygen on silver single crystal surfaces , 1976 .
[51] J. W. Gadzuk. Resonance-Tunneling Spectroscopy of Atoms Adsorbed on Metal Surfaces: Theory , 1970 .
[52] J. Perdew,et al. Change-in-self-consistent-field theory of the work function , 1978 .
[53] Walter Kohn,et al. Surface-Dipole Barriers in Simple Metals , 1973 .
[54] T. N. Taylor,et al. The interaction of hydrogen with Ni(110) , 1974 .
[55] G. Lapeyre,et al. Photoemission measurement of the d-band energies in calcium , 1971 .
[56] J. H. Block,et al. Messung der Austrittsarbeit des Wolframs mit Hilfe der Feldemission , 1973 .
[57] R. Fowler,et al. The Analysis of Photoelectric Sensitivity Curves for Clean Metals at Various Temperatures , 1931 .
[58] J. Simmons. Intrinsic Fields in Thin Insulating Films between Dissimilar Electrodes , 1963 .
[59] C. Papageorgopoulos,et al. Coadsorption of electropositive and electronegative elements: II. Cs and O2 on W (100) , 1973 .
[60] G. T. Trammell,et al. Gravitationally Induced Electric Fields in Conductors , 1968 .
[61] R. A. Collins,et al. Silicon adsorption on single-crystal faces of tungsten , 1974 .
[62] E. Sickafus. Sulfur and carbon on the (110) surface of nickel , 1970 .
[63] W. Gordy. A New Method of Determining Electronegativity from Other Atomic Properties , 1946 .
[64] T. Fort,et al. Adsorption of water on clean gold by measurement of work function changes , 1972 .
[65] D. Hamann,et al. The electronic structure of solid surfaces , 1976 .
[66] J. Perdew,et al. Surfaces of real metals by the variational self-consistent method , 1978 .
[67] C. Papageorgopoulos,et al. Work function and LEED study of Na and O2 covered surfaces of W(112) , 1971 .
[68] R. E. Thomas,et al. Investigation of the Patch Effect in Uranium Carbide , 1963 .
[69] C. Mee,et al. Work function measurements on (100) and (110) surfaces of silver , 1975 .
[70] N. Rasor,et al. Correlation of Emission Processes for Adsorbed Alkali Films on Metal Surfaces , 1964 .
[71] C. Herring. Gravitationally Induced Electric Field near a Conductor, and Its Relation to the Surface-Stress Concept , 1968 .
[72] L. Kleinman,et al. Crystalline effects in the theory of lattice contraction at metal surfaces , 1974 .
[73] Dependence of work function on coverage for aluminum/tungsten in the field electron microscope , 1974 .
[74] J. Grepstad,et al. Anisotropic work function of clean and smooth low-index faces of aluminium , 1976 .
[75] J. D. Levine,et al. Work Function Variation of Metals Coated by Metallic Films , 1962 .
[76] A. Rajagopal,et al. Theory of inhomogeneous magnetic electron gas , 1972 .
[77] M. Rasolt,et al. Gradient corrections in the exchange and correlation energy of an inhomogeneous electron gas , 1975 .
[79] A. Bennett. Effect of Adsorbate–Adsorbate Interactions on the Net Charge of an Alkali Atom on a Metal Substrate , 1968 .
[80] H. Eyring,et al. Adsorption Kinetics. I. The System of Alkali Atoms on Tungsten1 , 1955 .
[81] C. Mee,et al. The work function of rubidium , 1974 .
[82] J. Yates,et al. The adsorption of methane by tungsten (100) , 1971 .
[83] P. W. Palmberg,et al. Structural Influences on Adsorbate Binding Energy. I. Carbon Monoxide on (100) Palladium , 1969 .
[84] G. Ertl,et al. Adsorption of CO on Pd single crystal surfaces , 1974 .
[85] C. S. Bhatia,et al. Adsorption and surface diffusion of titanium on tungsten in a field emission microscope , 1974 .
[86] R. Simon. Work Function of Iron Surfaces Produced by Cleavage in Vacuum , 1959 .
[87] V. Heine,et al. Theory of the surface dipole on nontransition metals , 1972 .
[88] H. O. Pritchard,et al. The Concept Of Electronegativity , 1955 .
[89] N. R. Avery. LEED, Auger and work function study of iodine adsorbed on W(110) , 1974 .
[90] J. W. Gadzuk. The effects of screened exchange and correlation on the surface potential of an electron gas , 1968 .
[91] H. Papp,et al. Adsorption of carbon monoxide on polycrystalline nickel films , 1974 .
[92] L. Dubridge,et al. A Further Experimental Test of Fowler's Theory of Photoelectric Emission , 1932 .
[93] D. Collins,et al. A photoemission and thermal desorption study of carbon monoxide and oxygen adsorbed on platinum , 1976 .
[94] D. Juenker. Electron Emission in Moderate Accelerating Fields , 1957 .
[95] Max Wolfsberg,et al. The Spectra and Electronic Structure of the Tetrahedral Ions MnO4−, CrO4−−, and ClO4− , 1952 .
[96] M. Rasolt,et al. Comments on chemisorption at a metal surface , 1976 .
[97] R. E. Watson,et al. Surfaces of Transition Metals , 1973 .
[98] J. Carette,et al. EFFECT OF TEMPERATURE ON SURFACE CHARGES CAUSED BY AN INCIDENT ELECTRON BEAM ON A METALLIC SURFACE , 1968 .
[99] D. Gorodetsky,et al. The study of structure and work function of barium oxide films and the BaO double system on the (0001) face of rhenium: I. Barium oxide on rhenium (0001) face , 1973 .
[100] H. Wagner,et al. Diffusion of oxygen on tungsten (110) , 1977 .
[101] C. Duke,et al. Influence of the Lattice Potential on the Electronic Structure of Metallic Interfaces: Dipole Effects , 1969 .
[102] L. Germer,et al. Adsorption of carbon monoxide on tungsten (210) , 1972 .
[103] N. D. Lang,et al. Self-Consistent Theory of the Chemisorption of H, Li, and O on a Metal Surface , 1975 .
[104] R. Smoluchowski. Anisotropy of the Electronic Work Function of Metals , 1941 .
[105] W. Kohn,et al. Charge Densities and Binding Energies in Hydrogen Chemisorption. , 1973 .
[106] M. Shelef. Nitric Oxide: Surface Reactions and Removal from Auto Exhaust , 1975 .
[107] R. F. Tinder,et al. Changes in the Work Function of Iron in the α⇌γ Transformation Region , 1971 .
[108] L. Pauling. The Nature Of The Chemical Bond , 1939 .
[109] David Pines,et al. Elementary Excitations In Solids , 1964 .
[110] B. Hopkins,et al. Work function changes due to the adsorption of chlorine, bromine and iodine on tungsten single crystal surfaces , 1970 .
[111] N. D. Lang,et al. Study of sorption of oxygen on Al , 1976 .
[112] P. Gartland,et al. Photoelectric Work Function of a Copper Single Crystal for the (100), (110), (111), and (112) Faces , 1972 .
[113] S. Andersson,et al. Monolayer K-films on Ni(100) — I. Structure and work function , 1973 .
[114] C. Hodges,et al. Positrons in metals with voids, vacancies and surfaces☆ , 1973 .
[115] J. Beams,et al. Contact-Potential Changes Produced on Metal Surfaces by Tensile Stresses , 1970 .
[116] L. Germer,et al. The adsorption of hydrogen on tungsten (112); co-adsorption of hydrogen with oxygen , 1970 .
[117] V. Lazarev,et al. Work functions of binary alloy systems with different kinds of phase diagrams , 1974 .
[118] J. Beams. Potentials on Rotor Surfaces , 1968 .
[119] W. Spicer,et al. The oxidation of Cs—uv photoemission studies , 1975 .
[120] S. Andersson,et al. Electron structure of Na and K adsorbed on Ni (100) , 1974 .
[121] P. Hohenberg,et al. Inhomogeneous Electron Gas , 1964 .
[122] A. Holscher. A field emission retarding potential method for measuring work functions , 1966 .
[123] J. Langer,et al. The shielding of a fixed charge in a high-density electron gas☆ , 1960 .
[124] C. Papageorgopoulos,et al. Coadsorption of cesium and oxygen on Ni(100): II. Cesium enhanced chemisorption and oxidation , 1975 .
[125] C. Papageorgopoulos,et al. LEED and Work Function Study of Cs and O Adsorption on W(112) , 1972 .
[126] T. Engel,et al. Adsorption of oxygen on W(110): I. The p(2 × 1) structure , 1975 .
[127] Lu J. Sham,et al. ONE-PARTICLE PROPERTIES OF AN INHOMOGENEOUS INTERACTING ELECTRON GAS. , 1966 .
[128] Robert S. Mulliken,et al. A New Electroaffinity Scale; Together with Data on Valence States and on Valence Ionization Potentials and Electron Affinities , 1934 .
[129] Joshua R. Smith,et al. Self-consistent many-electron theory of electron work functions and surface potential characteristics for selected metals. , 1969 .
[130] H. Juretschke. Exchange Potential in the Surface Region of a Free-Electron Metal , 1953 .
[131] R. Gomer,et al. Mobility and Adsorption of Hydrogen on Tungsten , 1957 .
[132] F. K. Schulte. A theory of thin metal films: electron density, potentials and work function , 1976 .
[133] Electrostatically driven apparatus for measuring work function differences , 1976 .
[134] R. Rye,et al. Adsorption of ethylene and hydrogen on tungsten single crystals: Flash desorption, adsorption kinetics, and work function changes , 1974 .
[135] H. Wagner,et al. Work function of stepped tungsten single crystal surfaces , 1977 .
[136] W. Kohn,et al. Self-Consistent Equations Including Exchange and Correlation Effects , 1965 .
[137] N. D. Lang,et al. Chemical Trends in Atomic Adsorption on Simple Metals , 1976 .
[138] D. Langreth,et al. Compressibility and Binding Energy of the Simple Metals , 1967 .
[139] G. Mahan,et al. Comment on the theory of work function , 1974 .
[140] Eugene P. Wigner,et al. Theory of the Work Functions of Monovalent Metals , 1935 .
[141] P. H. Cutler,et al. The effect of correlation on the surface potential of a free electron metal , 1964 .
[142] R. A. Collins,et al. Adsorption of uranium on tungsten single crystal planes , 1971 .
[143] T. Rhodin,et al. Atomic Perfection and Field Emission from Tungsten (110) Surface , 1967 .
[144] W. Delgass,et al. X-ray photoelectron spectroscopy of oxygen adsorption on clean Ni(100) surfaces , 1976 .
[145] C. Kuyatt,et al. Field Emission Deflection Energy Analyzer , 1972 .
[146] S. Louie,et al. Surface states on the (001) surface of Nb , 1976 .
[147] G. Allan. Electronic Structure of Transition Metal Surfaces , 1976 .
[148] P. Holloway,et al. Kinetics of the reaction of oxygen with clean nickel single crystal surfaces. I - Ni/100/ surface. II - Ni/111/ surface , 1974 .
[149] J. Bertolini,et al. Work Function Studies of Ethylene, Acetylene and Benzene Adsorbed on Ni (111) Single Crystal Surface , 1974 .
[150] W. Rothemund,et al. MEASUREMENT OF CONTACT POTENTIAL DIFFERENCES BY ELECTRON INTERFEROMETRY , 1964 .
[151] D. Costello,et al. Evidence for the negative work function associated with positrons in gold. , 1972 .
[152] D. M. Newns. Self-Consistent Model of Hydrogen Chemisorption , 1969 .
[153] R. A. Collins. Silicon adsorption on tungsten field emitters , 1971 .
[154] D. R. Penn,et al. Field emission work functions , 1975 .
[155] W. Sachtler,et al. Photoelectric investigation of the surface composition of equilibrated PtRu alloy films in ultrahigh vacuum and in the presence of CO , 1972 .
[156] G. E. Becker,et al. Surface Molecular Structure from Ion-Neutralization Spectroscopy of Electrons in Surface Orbitals , 1969 .
[157] L. Germer,et al. ADSORPTION ON SINGLE-CRYSTAL PLANES OF TUNGSTEN. I. NITROGEN. , 1971 .
[158] V. S. Fomenko,et al. Handbook of Thermionic Properties , 1966 .
[159] L. Nordheim. The Effect of the Image Force on the Emission and Reflexion of Electrons by Metals , 1928 .
[160] M. Bacal,et al. ADSORPTION OF OXYGEN ON THE (100) PLANE OF TUNGSTEN. , 1972 .
[161] C. R. Helms,et al. Determination of the surface composition of the Cu−Ni alloys for clean and adsorbate−covered surfaces , 1975 .
[162] E. Bauer,et al. Adsorption and condensation of Cu on W single‐crystal surfaces , 1974 .
[163] J. Anderson,et al. Adsorption of Cl2 on titanium studied by field emission microscopy , 1971 .
[164] M. Henzler. Electron Diffraction and Surface Defect Structure , 1977 .
[165] D. Hamann,et al. Variational Calculation of the Image Potential near a Metal Surface , 1972 .
[166] J. K. Hartman,et al. Approach to Alkali-Metal Chemisorption within the Anderson Model , 1971 .
[167] W. Sachtler,et al. Photoelectric determination of the equilibrium of thin Pd films (80–120 Å) , 1974 .
[168] C. Hodges. Internal chemical potentials of electrons in metals , 1974 .
[169] Gerhard Ertl,et al. Adsorption of hydrogen on palladium single crystal surfaces , 1974 .
[170] A. R. Hutson. Velocity Analysis of Thermionic Emission from Single-Crystal Tungsten , 1955 .
[171] J. Pollard. A correlation of auger emission spectroscopy, LEED and work function measurements for the epitaxial growth of thorium on a W (100) substrate , 1970 .
[172] H. J. Krusemeyer,et al. Analysis and Improvement of the Kelvin Method for Measuring Differences in Work Function , 1973 .
[173] G. Ertl,et al. Adsorption of CO on a Ni(111) surface , 1974 .
[174] W. Kohn,et al. Theory of Metal Surfaces: Work Function , 1971 .
[175] J. May,et al. Ionic monolayers on metals: I. layers of like ions , 1972 .
[176] A. Naumovets,et al. Lithium adsorption on the (112) face of tungsten , 1973 .
[177] M. P. Das,et al. Work functions of alkali metals , 1975 .
[178] E. Ferroni,et al. Chemisorption of oxygen on the silver (111) surface , 1974 .
[179] C. Weizsäcker. Zur Theorie der Kernmassen , 1935 .
[180] L. Kleinman,et al. Self-consistent charge density and surface electronic states for the (001) face of lithium , 1974 .
[181] A. Miedema,et al. Empirical description of the role of electronegativity in alloy formation , 1973 .
[182] W. Sachtler. Chemisorption Surface Titration and Surface Reconstruction of Alloys , 1972 .
[183] V. Agarwala,et al. Work function changes during low pressure oxidation of aluminum at room temperature , 1974 .
[184] K. Macfadyen,et al. An improved technique for the measurement of contact potential differences , 1957 .
[185] W. Schröder,et al. Electronic structure of adsorbed sodium on Pt(III) , 1977 .
[186] J. Endriz,et al. Experimental Evidence for the Surface Photoelectric Effect in Aluminum , 1971 .
[187] C. Hodges,et al. Theory of electrochemical effects in alloys , 1972 .
[188] T. B. Grimley. The indirect interaction between atoms or molecules adsorbed on metals , 1967 .
[189] P. Anderson. Work Function of Cadmium , 1955 .
[190] C. Guillot,et al. Oxygen adsorption on clean Mo (100) surfaces , 1975 .
[191] A. Knapp. Surface potentials and their measurement by the diode method , 1973 .
[192] W. Kohn,et al. Non-local corrections to the electronic structure of metal surfaces , 1975 .
[193] F. Jona. Past and future surface crystallography by LEED , 1977 .
[194] E. W. Müller. Zur Geschwindigkeitsverteilung der Elektronen bei der Feldemission , 1943 .
[195] W. Kohn,et al. Theory of Metal Surfaces: Induced Surface Charge and Image Potential. , 1973 .
[196] G. Ertl,et al. Adsorption of hydrogen on nickel single crystal surfaces , 1974 .
[197] R. Gomer,et al. Adsorption and Diffusion of Oxygen on Tungsten , 1957 .
[198] T. Yamashina,et al. Work function of well-defined surface of copper-nickel alloy plates , 1974 .
[199] C. Mee,et al. The Adsorption of Carbon Monoxide on Iron, Cobalt, and Manganese , 1972, August 16.
[200] W. A. Zisman,et al. A NEW METHOD OF MEASURING CONTACT POTENTIAL DIFFERENCES IN METALS , 1932 .
[201] B. Y. Tong. Negative Work Function of Thermal Positrons in Metals , 1972 .
[202] Joshua R. Smith,et al. Self-consistent calculation of work function, charge densities, and local densities of states for Cu(100) , 1977 .
[203] R. Gomer,et al. Adsorption of Cs on Tungsten: Measurements on Single‐Crystal Planes , 1969 .
[204] H. Michaelson. The work function of the elements and its periodicity , 1977 .
[205] R. Gurney. Theory of Electrical Double Layers in Adsorbed Films , 1935 .
[206] G. Ertl,et al. Adsorption an Einkristall-Oberflächen von Cu/Ni-legierungen. I , 1971 .
[207] G. Ertl,et al. Adsorption of carbon monoxide on silver/palladium alloys , 1972 .
[208] G. Ertl,et al. Adsorption of hydrogen on a Pt(111) surface , 1976 .
[209] Philip W. Anderson,et al. Localized Magnetic States in Metals , 1961 .
[210] R. Gomer. Surface structure and diffusion , 1959 .
[211] C. D. Gelatt,et al. Charge transfer in alloys: AgAu , 1974 .
[212] S. Ying,et al. Alkali-metal chemisorption , 1975 .
[213] E. Mola. Letters to the editorTheory of the binding energy and of photo-effects for N2 on Fe , 1975 .
[214] B. B. Johnson,et al. Photoelectric work function measurements on nickel crystals and films , 1971 .
[215] G. Porsch,et al. Contact potential difference measurements on polycrystalline Ni during and after deposition with evaporated Ni in the temperature range 230° ≦ T ≦ 450°C , 1975 .
[216] T. Delchar. Oxygen chemisorption on copper single crystals , 1971 .
[217] L. Schiff,et al. Gravitation-Induced Electric Field near a Metal , 1966 .
[218] T. Tisone,et al. Diffusion in Thin Film Ti–Au, Ti–Pd, and Ti–Pt Couples , 1972 .
[219] R. E. Thomas,et al. Electron beam scanning technique for measuring surface work function variations , 1966 .
[220] J. C. Tracy,et al. Structural Influences on Adsorption Energy. III. CO on Cu(100) , 1972 .
[221] F. Hayes,et al. Work‐Function Studies on the N2‐W System , 1965 .
[222] J. Jones,et al. A study of the growth of germanium, and silicon, on tungsten, by field emission and field-ion microscopy , 1974 .
[223] D. M. Newns,et al. The interpretation of work-function variation in alkali chemisorption from the atomic viewpoint , 1974 .
[224] R. L. Gerlach,et al. Binding and charge transfer associated with alkali metal adsorption on single crystal nickel surfaces , 1970 .
[225] A. Gelberg,et al. Temperature Dependence of the Work Function of Metals (Mo,Ni) , 1961 .
[226] J. H. Rose,et al. Calculation of ground state surface properties of simple metals including non-local effects of the exchange and correlation energy , 1976 .
[227] L. W. Swanson,et al. Work function measurements by the field emission retarding potential method. , 1973 .
[228] F. E. Girouard,et al. Thermionic Emission from a Niobium Single Crystal , 1974 .
[229] T. Schneider. The Work Function in Simple Metals , 1969 .
[230] T. Madey. Adsorption and displacement processes on W(111) involving CH4, H2, and O2☆ , 1972 .
[231] S. Louie,et al. Self-consistent pseudopotential calculation for the (111) surface of aluminum , 1975 .
[232] N. A. Surplice,et al. The adsorption of carbon monoxide, ammonia, and wet air on gold , 1975 .
[233] S. Trasatti. Accurate estimation of the work function and surface energy of polycrystalline technetium , 1972 .
[234] C. R. Helms. Observation of the segregation of Cu to the surface of a clean, annealed, 50% Cu-50% Ni alloy by auger electron spectroscopy , 1975 .
[235] D. Eastman,et al. PHOTOELECTRIC WORK FUNCTIONS OF TRANSITION, RARE-EARTH, AND NOBLE METALS. , 1970 .
[236] J. Hölzl,et al. Reflexion sehr langsamer Elektronen an Metalloberflächen , 1965 .
[237] L. Sham. Local Exchange Approximations and the Virial Theorem , 1970 .
[238] T. A. Callcott,et al. Photoemission from Clean and Cesium-Covered Nickel Surfaces , 1969 .
[239] H Mikhail,et al. Measurement of contact potential by electrostatic excitation of low frequency vibrations , 1965 .
[240] J. Vannimenus,et al. Static electronic perturbations of metallic surfaces , 1975 .
[241] D. M. Newns,et al. Atomic theory of work function variation in alkali adsorption on transition metals , 1972 .
[242] B. Bigeard,et al. Étude de l'adsorption de l'oxygène sur ruban de rhénium par mesure des variations du travail d'extraction électronique , 1974 .
[243] A. Naumovets,et al. ADSORBED BARIUM FILMS ON TUNGSTEN AND MOLYBDENUM (011) FACE. , 1972 .
[244] R. E. Thomas,et al. Diffusion measurements in thin films utilizing work function changes: Cr into Au , 1972 .
[245] V. Agarwala,et al. Effect of pressure and temperature on changes in the work function of aluminum during interaction with oxygen , 1975 .
[246] S. Fain,et al. Work-function variation with alloy composition: Ag-Au , 1974 .
[247] T. Rieger. Gravitationally Induced Electric Field in Metals , 1970 .
[248] W. Sachtler,et al. Crystal face specificity of nitrogen adsorption on a platium field emission tip , 1973 .
[249] A. Bosch,et al. Changes in work function due to charge transfer in chemisorbed layers , 1977 .
[250] R. Davies. Surface potential of a free electron metal in the RPA , 1968 .
[251] R. Nieminen,et al. Pressure cell-boundary relation, Fermi levels and surface dipoles for transition metals , 1976 .
[252] T. Fort,et al. Adsorption of water on clean aluminum by measurement of work function changes , 1972 .
[253] T. Huen,et al. Photoelectric Emission from Zn , 1969 .
[254] N. D. Lang. Theory of Work-Function Changes Induced by Alkali Adsorption , 1971 .
[255] G. Ehrlich,et al. Chemisorption on Single‐Crystal Planes: Nitrogen on Tungsten , 1965 .
[256] Hikaru Kobayashi,et al. Observations on the photoelectric work function and leed pattern from the (111) surface of an iron single crystal , 1969 .
[257] Catalysis and surfaces , 1974 .
[258] H. Wassmuth. Untersuchung der Adsorption von Sauerstoff an Wolfram durch Messung der Austrittsarbeitsänderung und des Haftkoeffizienten , 1971 .
[259] T. Madey,et al. Adsorption of oxygen and oxidation of CO on the ruthenium (001) surface , 1975 .
[260] R. Błaszczyszyn,et al. Work function of the adsorption system of potassium on tungsten , 1975 .
[261] J. H. Block,et al. Die Feldemission des wolframs nach der adsorption von Kohlenwasserstoffen , 1972 .
[262] H. Brongersma,et al. Selected topics in low-energy ion scattering: Surface segregation in Cu/Ni alloys and ion neutralization , 1975 .
[263] H. Shelton. Thermionic Emission from a Planar Tantalum Crystal. , 1957 .
[264] B. Hopkins,et al. Chemical and physical adsorption of oxygen on the (110) plane of tungsten , 1971 .
[265] N. Burke. A tight-binding theory of the interactions between transition metal adatoms adsorbed on a transition metal substrate , 1976 .
[266] Z. Sidorski,et al. Adsorption of copper on tungsten: measurements on single crystal planes , 1973 .
[267] Scott Kirkpatrick,et al. Single-Site Approximations in the Electronic Theory of Simple Binary Alloys , 1968 .
[268] J. Bardeen. Theory of the Work Function. II. The Surface Double Layer , 1936 .
[269] A. B. Cardwell. Photoelectric and Thermionic Properties of Nickel , 1949 .
[270] R. Nieminen,et al. Positron work functions in transition metals , 1976 .
[271] T. Gustafsson,et al. Photoelectric properties of evaporated Be films , 1974 .
[272] C H B Mee,et al. Work function measurements on (100), (110) and (111) surfaces of aluminium , 1973 .
[273] E. Guth,et al. Electron Emission of Metals in Electric Fields II. Field Dependence of the Surface Photo-Effect , 1941 .
[274] D. Newns,et al. Effect of the Image Force in Chemisorption , 1974 .
[275] R. Glang,et al. Handbook of Thin Film Technology , 1970 .
[276] F. K. Schulte. On the theory of the work function , 1977 .
[277] K. Rieder,et al. Diffusion of Metals in Thin Metal Films , 1972 .
[278] A. Cetronio,et al. A study by high field microscopy of the effect of substrate surface structure on the work function of layers of group 1b metals adsorbed on tungsten , 1974 .
[279] T. Fort,et al. Interaction of oxygen with clean aluminum surfaces by measurement of work function changes , 1972 .
[280] C. Papageorgopoulos,et al. Work function of alkali-covered W(100) , 1972 .
[281] Bj Hopkins,et al. Adsorption of methane, ethane and propane on the (100) face of a tungsten single crystal , 1972 .
[282] W. Sachtler,et al. Photoelectricdetermination of the equilibration of metal and alloy films , 1971 .
[283] B. Hopkins,et al. The work function variation during caesium deposition on the (100) and (110) single crystal surfaces of tungsten , 1971 .
[284] J. B. Krieger,et al. Metal surface properties in the linear potential approximation , 1977 .
[285] J. Vannimenus,et al. Surface Forces and the Jellium Model. , 1973 .
[286] R. Fowler,et al. Electron Emission in Intense Electric Fields , 1928 .
[287] Malcolm J. Stott,et al. Work Functions for Positrons in Metals , 1973 .
[288] J. Endriz,et al. Direct Optical Excitation of the Surface Photoelectric Effect , 1973 .
[289] P. W. Palmberg,et al. Physical adsorption of xenon on Pd(100) , 1971 .
[290] S. Overbury,et al. The surface composition of the silver—Gold system by Auger electron spectroscopy , 1976 .
[291] J. Hölzl,et al. A new pendulum device to measure contact potential differences , 1974 .
[292] P. Anderson. A New Technique for Preparing Monocrystalline Metal Surfaces for Work Function Study. The Work Function of Ag(100) , 1941 .
[293] S. Berge,et al. Photoelectric work function of a molybdenum single crystal for the (100), (110), (111), (112), (114), and (332) faces , 1974 .
[294] H. Kolm. Rotating Electrometer for Comparative Work Function Measurements , 1956 .
[295] D. R. Hamann,et al. Self-Consistent Electronic Structure of Solid Surfaces , 1972 .
[296] J. Anderson,et al. Study of adsorption of titanium on tungsten and rhenium by field electron emission , 1971 .
[297] A. Walton,et al. Changes in the chemical potential of tin on becoming superconducting , 1977 .
[298] V. Peuckert. Green function theory of a dense electron gas with surface. I. Work function , 1974 .
[299] J. Demuth,et al. Chemisorption on (001), (110) and (111) Nickel Surfaces , 1974 .
[300] A. Bennett,et al. Theory of the Electronic Configuration of a Metallic Surface-Adsorbate System , 1966 .
[301] H. Wassmuth,et al. Untersuchungen der Oxidbildung und Adsorption von Erdalkalien an einer sauerstoffvorbelegten Wolframoberfläche mit Hilfe der Oberflächenionisation , 1973 .
[302] Ig. Tamm,et al. Über die Austrittsarbeit der Elektronen aus Metallen , 1932 .
[303] J. Vannimenus,et al. Jellium surfaces and interfaces , 1976 .
[304] D. Hamann,et al. Surface States and Surface Bonds of Si(111) , 1973 .
[305] R. Shimizu,et al. LEED-Work Function Studies on Fe (100) , 1972 .
[306] D. Klemperer,et al. Roughness and surface potential in physisorption , 1971 .
[307] R. Gomer,et al. Field emission spectroscopy of gold on tungsten , 1974 .
[308] J. Yates,et al. The adsorption of xenon by W(111), and its interaction with preadsorbed oxygen , 1974 .
[309] Energy Distribution in Field Emission from Krypton Covered Tungsten , 1971 .