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RELATION BETWEEN REFERENCE LEVELS, WORK FUNCTIONS AND CONTACT POTENTIAL DIFFERENCES IN PHOTOELECTRON SPECTROSCOPY.SITTE J.1976; CHEM. PHYS. LETTERS; NETHERL.; DA. 1976; VOL. 42; NO 1; PP. 131-132; BIBL. 7 REF.Article

CALIBRATION OF XPS CORE-LEVEL BINDING ENERGIES: INFLUENCE OF THE SURFACE CHEMICAL SHIFTCHADWICK D; KAROLEWSKI MA.1981; J. ELECTRON SPECTROSC. RELAT. PHENOM.; ISSN 0368-2048; NLD; DA. 1981; VOL. 24; NO 2; PP. 181-187; BIBL. 27 REF.Article

ENERGIE DE LIAISON ET SUSCEPTIBILITE MAGNETIQUE D'UN ION DANS LE MODELE DE THOMAS-FERMIDMITRIEVA IK; PLINDOV GI; CHEVGANOV BA et al.1977; OPT. I SPEKTVOSK.; S.S.S.R.; DA. 1977; VOL. 42; NO 1; PP. 7-12; BIBL. 12 REF.Article

ENERGY CALIBRATION IN ELECTRON SPECTROSCOPY AND THE RE-DETERMINATION OF SOME REFERENCE ELECTRON BINDING ENERGIESBIRD RJ; SWIFT P.1980; J. ELECTRON SPECTROSC. RELAT. PHENOM.; ISSN 0368-2048; NLD; DA. 1980; VOL. 21; NO 3; PP. 227-240; BIBL. 17 REF.Article

OBSERVATION DE L'ENERGIE DE LIAISON SI(2P) PAR LA METHODE ESCA ET DETERMINATION DES IONS O-, O2- ET DE O0 DANS DES SILICATESKANEKO Y; SUGINOHARA Y.1978; J. JAP. INST. METALS; JAP.; DA. 1978; VOL. 42; NO 3; PP. 285-289; ABS. ANGL.; BIBL. 8 REF.Article

AN X-RAY AND UV PHOTOELECTRON SPECTROSCOPIC STUDY OF IMPLANTED AND ADSORBED XENON ON NICKEL (100) AND (111) SURFACES.TAPPING RL; NORTON PR.1976; CHEM. PHYS. LETTERS; NETHERL.; DA. 1976; VOL. 41; NO 2; PP. 252-256; BIBL. 15 REF.Article

Investigating material trends and lattice relaxation effects for understanding electron transfer phenomena in rare-earth-doped optical materialsTHIEL, C. W; CONE, R. L.Journal of luminescence. 2011, Vol 131, Num 3, pp 386-395, issn 0022-2313, 10 p., SUPArticle

OXIDATION OF IRON AND MOLYBDENUM NAPHTHALOCYANINES: X-RAY PHOTOELECTRON STUDIES IN RELATION TO THE ELECTROCATALYSIS OF OXYGEN REDUCTION AND EVOLUTIONRIGA J; SAVY M; VERBIST JJ et al.1982; CS FARADAY TRANS. 1; ISSN 0300-9599; GBR; DA. 1982; VOL. 78; NO 9; PP. 2773-2785; BIBL. 37 REF.Article

XPS STUDIES OF OCRE BINDING ENERGIES IN TRANSITION METAL COMPLEXES. II: LIGAND GROUP SHIFTSFELTHAM RD; BRANT P.1982; J. AM. CHEM. SOC.; ISSN 0002-7863; USA; DA. 1982; VOL. 104; NO 3; PP. 641-645; BIBL. 54 REF.Article

INTERACTION WITH AUGER CONTINUA AS A SOURCE OF ATOMIC-ENERGY-LEVEL SHIFTSMAU HSIUNG CHEN; CRASEMANN B; MARK H et al.1981; PHYS. REV. A; ISSN 0556-2791; USA; DA. 1981; VOL. 24; NO 2; PP. 1158-1161; BIBL. 23 REF.Article

RELATIVISTIC CORE BINDING ENERGIES OF SELECTED ATOMS: COMPARISON WITH EXPERIMENT AND OTHER CALCULATIONSKEY RJ; BANNA MS; EWIG CS et al.1981; J. ELECTRON SPECTROSC. RELAT. PHENOM.; ISSN 0368-2048; NLD; DA. 1981; VOL. 24; NO 2; PP. 173-179; BIBL. 13 REF.Article

USE OF CORE ELECTRON BINDING ENERGIES FOR THE COMPARISON OF VALENCE-SHELL IONIZATION POTENTIALS AND THE QUANTIFICATION OF THE BONDING AND ANTIBONDING CHARACTER OF MOLECULAR ORBITALSJOLLY WL.1981; J. PHYS. CHEM.; ISSN 0022-3654; USA; DA. 1981; VOL. 85; NO 25; PP. 3792-3797; BIBL. 32 REF.Article

ELECTRONIC STRUCTURE OF CO(CO)4-: AN SCF-XALPHA STUDYEL ISSA BD; HINCHLIFFE A.1980; J. MOL. STRUCT.; ISSN 0022-2860; NLD; DA. 1980; VOL. 69; PP. 305-308; BIBL. 8 REF.Article

APPLICABILITE DU THEOREME DE KOOPMANS LORS DU CALCUL DES DEPLACEMENTS CHIMIQUES DES RAIES K OU RX DANS LES TERRES RARESNIKULIN VK; BAND IM; TRZHASKOVSKAYA MB et al.1978; TEOR. EKSPER. KHIM.; UKR; DA. 1978; VOL. 14; NO 5; PP. 661-665; BIBL. 14 REF.Article

THE CORRELATION OF CORE REPLACEMENT ENERGIES WITH NONBONDING S ELECTRON DENSITY.JOLLY WL; GIN C; ADAMS DB et al.1977; CHEM. PHYS. LETTERS; NETHERL.; DA. 1977; VOL. 46; NO 2; PP. 220-224; BIBL. 42 REF.Article

CORRELATIONS ENTRE LES DEPLACEMENTS CHIMIQUES EN SPECTROSCOPIE ESCA ET MOSSBAUER. COMPOSES PENTACOORDINES DE L'ETAIN.BALDY A; LIMOUZIN Y; MAIRE JC et al.1976; J. MICR. SPECTROSC. ELECTRON.; FR.; DA. 1976; VOL. 1; NO 3; PP. 469-474; ABS. ANGL.; BIBL. 11 REF.Article

SPECTROSCOPIE DE PHOTOELECTRONS DE RAYONS X DE METALLOPORPHYRINES REDUITESNIWA Y.1976; J. NATION. CHEM. LAB. INDUSTRY; JAP.; DA. 1976; VOL. 71; NO 5; PP. 203-205; ABS. ANGL.; BIBL. 16 REF.Article

X-RAY PHOTOELECTRON STUDY OF ELECTRONIC STRUCTURE AND ULTRAVIOLET AND ISOTHERMAL DECOMPOSITION OF 1,3,5-TRIAMINO-2,4,6-TRINITROBENZENESHARMA J; GARRETT WL; OWENS FJ et al.1982; J. PHYS. CHEM.; ISSN 0022-3654; USA; DA. 1982; VOL. 86; NO 9; PP. 1657-1661; BIBL. 14 REF.Article

L2,3)M2,3)M2,3) AND L2,3)M2,3)N1 AUGER SPECTRA OF FREE POTASSIUM ATOMSAKSELA S; KELLOKUMPU M; AKSELA H et al.1981; PHYS. REV. A; ISSN 0556-2791; USA; DA. 1981; VOL. 23; NO 5; PP. 2374-2380; BIBL. 23 REF.Article

ATOMIC ELECTRON BINDING ENERGIES IN FERMIUMDAS MP.1981; PHYS. REV. A; ISSN 0556-2791; USA; DA. 1981; VOL. 23; NO 2; PP. 391-394; BIBL. 16 REF.Article

DETERMINATION OF CIRCUMSTANCES UNDER WHICH THE CORRELATION OF CORE BINDING ENERGY AND GASE-PHASE BASICITY OR PROTON AFFINITY BREAKS DOWNBROWN RS; TSE A.1980; J. AMER. CHEM. SOC.; USA; DA. 1980; VOL. 102; NO 16; PP. 5222-5226; BIBL. 29 REF.Article

ELECTRON COINCIDENCE SPECTROSCOPY OF O2: VALENCE ELECTRON MOMENTUM DISTRIBUTIONS AND BINDING ENERGIESSUZUKI IH; WEIGOLD E; BRION CE et al.1980; J. ELECTRON SPECTROSC. RELAT. PHENOM.; ISSN 0368-2048; NLD; DA. 1980; VOL. 20; NO 4; PP. 289-303; BIBL. 21 REF.Article

A DELTA SCF MO INVESTIGATION OF CORE-IONIZED STATES OF SOME FIRST-ROW TRANSITION METAL IONSCLARK DT; CROMARTY BJ; SGAMELOTTI A et al.1980; J. ELECTRON. SPECTROSC. RELAT. PHENOMENA; NLD; DA. 1980; VOL. 19; NO 4; PP. 303-309; BIBL. 14 REF.Article

A STUDY OF THE IRON BORIDES. II: ELECTRONIC STRUCTUREJOHNSON O; JOYNER DJ; HERCULES DM et al.1980; J. PHYS. CHEM.; ISSN 0022-3654; USA; DA. 1980; VOL. 84; NO 5; PP. 542-547; BIBL. 48 REF.Article

AN ESCA STUDY OF TIN COMPOUNDSWILLEMEN H; VAN DE VONDEL DF; VAN DER KELEN GP et al.1979; INORG. CHIM. ACTA; ITA; DA. 1979; VOL. 34; NO 2; PP. 175-180; BIBL. 18 REF.Article

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