Publications

  1. Resonant magnetic scattering study of the 50% Ho­Tb alloy,
    A. Stunault, C. Vettier, F. de Bergevin, F. Maier, G. Grubel, R.M. Galera, S.B. Palmer,
    J. Magnetism Magn. Mater. 140­-144, 753 (1995).
  2. A simple design for a helium scattering apparatus,
    F. Maier, S. Kneitz, H. Koschel, H.-P. Steinrück,
    Surf. Sci. 377­-379, 1101 (1997).
  3. High ­resolution surface ­sensitive C1s core ­level spectra of clean and
    hydrogen ­terminated diamond (100) and (111) surfaces
    ,
    R. Graupner, F. Maier, J. Ristein, L. Ley, C. Jung,
    Phys. Rev. B 57, 12397 (1998).
  4. Electronic and atomic structure of the C­-terminated 6H­-SiC surface,
    M. Hollering, B. Mattern, F. Maier, L. Ley, A.P.J. Stampfl, J. Xue,
    J.D. Riley, R.C.G. Leckey,
    Mat. Sci. For. 264­-268, 331 (1998).
  5. The hydrogenated and bare diamond (110) surface: a combined LEED­, XPS­, and ARPES ­study
    F. Maier, R. Graupner, M. Hollering, L. Hammer, J. Ristein, L. Ley,
    Surf. Sci. 443, 177 (1999).
  6. Electronic states of an ordered oxide on C­-terminated 6H­-SiC,
    M. Hollering, F. Maier, N. Sieber, M. Stammler, J. Ristein, L. Ley,
    A.P.J. Stampfl, J.D. Riley, R.C.G. Leckey, F.P. Leisenberger, F.P. Netzer,
    Surf. Sci. 442, 531 (1999).
  7. Surface electronic properties of diamond,
    J. Ristein, F. Maier, M. Riedel, J.B. Cui, L. Ley,
    Phys. Stat. Sol. A 181, 65 (2000).
  8. Origin of surface conductivity in diamond,
    F. Maier, M. Riedel, B. Mantel, J. Ristein, L. Ley,
    Phys. Rev. Lett. 85, 3472 (2000).
  9. Electronic and atomic structure of an ordered silicate adlayer on hexagonal SiC,
    M. Hollering, N. Sieber, F. Maier, J. Ristein, L. Ley, J.D. Riley,
    R.C.G. Leckey, F.D. Leisenberger, F.P. Netzer,
    Mat. Sci. For. 338­-342, 387 (2000).
  10. The role of adsorbates and defects on diamond surfaces,
    J. Ristein, J.B. Cui, R. Graupner, F. Maier, M. Riedel, B.F. Mantel, M. Stammler, L. Ley,
    New Diamond Front. C. Techn. 10, 363 (2000).
  11. Spectroscopic investigations of diamond/hydrogen/metal and diamond/metal interfaces,
    F. Maier, M. Riedel, J. Ristein, L. Ley,
    Diamond Relat. Mater. 10, 506 (2001).
  12. Diamond surface conductivity measurements and photoelectron spectroscopy,
    J. Ristein, F. Maier, M. Riedel, M. Stammler, L. Ley,
    Diamond Relat. Mater. 10, 416 (2001).
  13. Surface conductivity of diamond as a function of nitrogen doping,
    J. Ristein, M. Riedel, F. Maier, B.F. Mantel, M. Stammler, L. Ley,
    Phys. Stat. Sol. A 186, 249 (2001).
  14. Surface doping: a special feature of diamond,
    J. Ristein, M. Riedel, F. Maier, B.F. Mantel, M. Stammler, L. Ley,
    J. Phys.: Condens. Matter 13, 8979 (2001).
  15. The electron affinity of plasma hydrogenated and chemically oxidized diamond (100) surfaces,
    F. Maier, J. Ristein, L. Ley,
     Phys. Rev. B 64, 165411 (2001).
  16. Comment on "Origin of surface conductivity in diamond" - Reply
     F. Maier, M. Riedel, B. Mantel, J. Ristein, L. Ley
     Phys. Rev. Lett. 87, 209706 (2001).
  17. Geometry of the (2x1) reconstruction of diamond (111),
    S. Walter, J. Bernhardt, U. Starke, K. Heinz, F. Maier, J. Ristein, L. Ley,
    J. Phys.: Condens. Matter 14, 3085 (2002).
  18. Surface Enrichment and Depletion Effects of Ions Dissolved in an
    Ionic Liquid: An X-Ray Photoelectron Spectroscopy Study
    ,
    F. Maier*, J.M. Gottfried, J. Rossa, D. Gerhard, P. Schulz, W. Schwieger,
    P. Wasserscheid, H.-P. Steinrück,
    Ang. Chem. Int. Ed. 45, 7778 (2006).
  19. Surface studies on the ionic liquid 1-ethyl-3-methylimidazolium ethylsulfate,
    J.M. Gottfried, F. Maier*, J. Rossa, D. Gerhard, P.S. Schulz, P. Wasserscheid, H.-P. Steinrück,
    Z. Phys. Chem. 220, 1439 (2006).
  20. Interaction of Co(II)-tetraarylporphyrins with a Ag(111) surface studied with photoelectron spectroscopy, 
    Th. Lukasczyk, K. Flechtner, L. R. Merte, N. Jux, F. Maier, J.M. Gottfried, H.-P. Steinrück,
    J. Phys. Chem. C 111, 3090 (2007).
  21. Chloroalkylsulfonate ionic liquids by ring opening of sultones with organic chloride salts,
    N. Paape, W. Wei, A. Bösmann, C. Kolbeck, F. Maier, H.-P. Steinrück,
    P. Wasserscheid, P.S. Schulz,
    Chem. Comm. 33, 3867 (2008).
  22. Surface characterization of functionalized imidazolium-based ionic liquids,
    C. Kolbeck, M. Killian, F. Maier*, N. Paape, P. Wasserscheid, H.-P. Steinrück,
    Langmuir 24, 9500 (2008).
  23. Physical vapor deposition of [EMIM][Tf2N]: A new approach to the modification
    of surface properties with ultrathin ionic liquid films
    ,
    T. Cremer, M. Killian, J.M. Gottfried, N. Paape, P. Wasserscheid, F. Maier*, H.-P. Steinrück,
    ChemPhysChem 9, 2185 (2008).
  24. The influence of different substituents on the surface composition
    of ionic liquids studied using ARXPS
    ,
    K. Lovelock, C. Kolbeck, T. Cremer, N. Paape, P. Schulz, P. Wasserscheid,
    F. Maier*, H.-P. Steinrück,
    J. Phys. Chem. B 113, 2854 (2009).
  25. The influence of different anions on the surface composition of
    ionic liquids studied using ARXPS,

    C. Kolbeck, T. Cremer, K.R.J. Lovelock, N. Paape, P.S. Schulz, P. Wasserscheid,
    F. Maier*, H.-P. Steinrück,
    J. Phys. Chem. B 113, 8682 (2009).
  26. Insights into the surface composition and enrichment effects of ionic liquids and ionic liquid mixtures,
    F. Maier*, T. Cremer, C. Kolbeck, K.R.J. Lovelock, N. Paape, P.S. Schulz,
    P. Wasserscheid, H.-P. Steinrück,
    Phys. Chem. Chem. Phys. 12, 1905, (2010).
    IL-RP / DOI: 10.1039/b920804f
  27. Towards a molecular understanding of cation-anion interactions -
    probing the electronic structure of imidazolium ionic liquids by NMR Spectroscopy,
    X-ray photoelectron spectroscopy and theoretical calculations
    ,
    T. Cremer, C. Kolbeck, K.R.J. Lovelock, N. Paape, R. Wölfel, P.S. Schulz,
    P. Wasserscheid, H. Weber, J. Thar, B. Kirchner, F. Maier*, H.-P. Steinrück,
    Chem. Eur. J. 16, 9018 (2010).
    IL-RP / DOI: 10.1002/chem.201001032
  28. Ionic liquid based model catalysis: interaction of [BMIM][Tf2N]
    with Pd nanoparticles supported on an ordered alumina film
    ,
    M. Sobota, M. Schmid, M. Happel, M. Amende, F. Maier, H.-P. Steinrück,
    N. Paape, P. Wasserscheid, M. Laurin, J.M. Gottfried, J. Libuda,
    Phys. Chem. Chem. Phys. 12, 10610, (2010).
    IL-RP / DOI: 10.1039/c003753b
  29. Photoelectron spectroscopy of ionic liquid-based interfaces,
    K.R.J. Lovelock, I.J. Villar-Garcia, F. Maier, H.-P. Steinrück, P. Licence,
    Chem. Rev. 110, 5158, (2010).
    IL-RP / DOI: 10.1021/cr100114t
  30. Ligand effects on the surface composition of Rh-containing ionic liquid solutions
    used in hydroformylation catalysis
    ,
    C. Kolbeck, N. Paape, T. Cremer, P.S. Schulz, F. Maier, H.-P. Steinrück, P. Wasserscheid,
    Chem. Eur. J. 16, 12083 (2010).
    IL-RP / DOI: 10.1002/chem.201000903
  31. Density and surface tension of ionic liquids,
    C. Kolbeck, J. Lehmann, K.R.J. Lovelock, T. Cremer, N. Paape, P. Wasserscheid,
    A.P. Fröba, F. Maier*, H.-P. Steinrück,
    J. Phys. Chem. B 114, 17025 (2010).
    IL-RP / DOI: 10.1021/jp1068413
  32. Methylated [(arene)(1,3-cyclohexadiene)Ru(0)] complexes as low-melting MOCVD
    precursor complexes with a controlled follow-up chemistry of the ligands
    ,
    I. Jipa, K. Danova, N. Popovska, M.A. Siddiqi, R.A. Siddiqui, B. Atakan,
    T. Cremer, F. Maier, H. Marbach, H.-P. Steinrück, F. Heinemann, U. Zenneck,
    J. Mat. Chem. 21, 3014 (2011).
  33. Methylated [(benzene)(1,3-butadiene)Ru-0] derivatives as novel MOCVD precursors
    with favorable properties
    ,
    I. Jipa, M.A. Siddiqi, R.A. Siddiqui, B. Atakan, H. Marbach, T. Cremer,
    F. Maier, H.-P. Steinrück, K. Danova, N. Popovska, F.W.  Heinemann, U. Zenneck,
    Chem. Vapor. Depos. 17, 15 (2011). 
  34. Liquid/Solid interface of ultrathin ionic liquid films:
    [C1C1Im][Tf2N] and [C8C1Im][Tf2N] on Au(111)
    ,
    T. Cremer, M. Stark, A. Deyko, H.-P. Steinrück, and F. Maier*,
    Langmuir 27, 3662 (2011).
    IL-RP / DOI: 10.1021/la105007c

*: Corresponding author

PhD thesis: "Electronic properties of diamond interfaces" (Pdf-format, 17 MB)

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