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Last updated 24/04/2012

Publication List – E. Wrede

  1. Toward real-time charged-particle image reconstruction using polar onion-peeling.
    G. M. Roberts, J. L. Nixon, J. Lecointre, E. Wrede, and J. R. R. Verlet.
    Rev. Sci. Instrum. 80 (2009), 053104-7.

  2. Facile photoinduced charge separation through a cyanoacetylide bridge in a heterobimetallic Fe(II)–Re(I) complex.
    M. E. Smith, E. L. Flynn, M. A. Fox, A. Trottier, E. Wrede, D. S. Yufit, J. A. K. Howard, K. L. Ronayne, M. Towrie, A. W. Parker, F. Hartl, and P. J. Low.
    Chem. Comm. 2008 (2008), 5845−5847.

  3. Vibrational excitation through tug-of-war inelastic collisions.
    S. J. Greaves, E. Wrede, N. T. Goldberg, J. Zhang, D. J. Miller, and R. N. Zare.
    Nature 454 (2008), 88−91.

  4. A quasi-classical trajectory study of the time-delayed forward scattering in the hydrogen exchange reaction.
    S. J. Greaves, D. Murdock, and E. Wrede.
    J. Chem. Phys. 128 (2008), 164307-8.

  5. New, unexpected and dominant mechanisms in the hydrogen exchange reaction.
    S. J. Greaves, D. Murdock, E. Wrede, and S. C. Althorpe.
    J. Chem. Phys. 128 (2008), 164306-10.

  6. The Influence of the Geometric Phase on Reaction Dynamics.
    S. C. Althorpe, J. C. Juanes-Marcos, and E. Wrede.
    Adv. Chem. Phys. 138 (2008), 1−42.

  7. On the dynamics of the H+ + D2(v=0, j=0) → HD + D+ reaction: A comparison between theory and experiment.
    E. Carmona-Novillo, T. Gonzalez-Lezana, O. Roncero, P. Honvault, J.-M. Launay, N. Bulut, F. J. Aoiz, L. Bañares, A. Trottier, and E. Wrede.
    J. Chem. Phys. 128 (2008), 014304-15.

  8. Effect of the geometric phase on the dynamics of the hydrogen-exchange reaction.
    J. C. Juanes-Marcos, S. C. Althorpe, and E. Wrede.
    J. Chem. Phys. 126 (2007), 044317-11.

  9. Cavity Ring-Down Spectroscopy of the Torsional Motions of 1,4-Bis(phenylethynyl)benzene.
    S. J. Greaves, E. L. Flynn, E. L. Futcher, E. Wrede, D. P. Lydon, P. J. Low, S. R. Rutter, and A. Beeby.
    J. Phys. Chem. A, 110 (2006), 2114−2121.

  10. Theoretical Study of Geometric Phase Effects in the Hydrogen-Exchange Reaction.
    J. C. Juanes-Marcos, S. C. Althorpe, and E. Wrede.
    Science 309 (2005), 1227−1230.

  11. Reactive Scattering of Rydberg Atoms: H* + D2 → HD + D*.
    E. Wrede, L. Schnieder, K. Seekamp-Schnieder, B. Niederjohann, and K. H. Welge.
    Phys. Chem. Chem. Phys. 7 (2005), 1577−1582.

  12. High resolution ion imaging study of BrCl photolysis in the wavelength range 330−570 nm.
    M. Beckert, E. R. Wouters, M. N.R. Ashfold, and E. Wrede.
    J. Chem. Phys. 119 (2003), 9576−9589.

  13. Quasi-classical and quantum mechanical modelling of the breakdown of the axial recoil approximation observed in the near threshold photolysis of IBr and Br2.
    E. Wrede, E. R. Wouters, M. Beckert, R. N. Dixon, and M. N. R. Ashfold.
    J. Chem. Phys. 116 (2002), 6064−6071.

  14. Observation and Interpretation of a time-delayed mechanism in the hydrogen-exchange reaction.
    S. C. Althorpe, F. Fernández-Alonso, B. D. Bean, J. D. Ayers, A. E. Pomerantz, R. N. Zare, and E. Wrede.
    Nature 416 (2002), 67−70.

  15. Continuum State Spectroscopy: A High Resolution Ion Imaging Study of IBr Photolysis in the Wavelength Range 440−685 nm.
    E. Wrede, S. Laubach, S. Schulenburg, A. Brown, E. R. Wouters, A. J. Orr-Ewing, and M. N. R. Ashfold.
    J. Chem. Phys. 114 (2001), 2629−2646.

  16. Photodissociation and photoionization of highly excited HI molecules.
    P. M. Regan, D. Ascenzi, E. Wrede, P. A. Cook, M. N. R. Ashfold, and A. J. Orr-Ewing.
    Phys. Chem. Chem. Phys. 2 (2000), 5364−5374.

  17. Velocity Map Imaging of the Near Threshold Photodissociation of IBr: Accurate Determination of De(I-Br).
    E. Wrede, S. Laubach, S. Schulenburg, A. J. Orr-Ewing, and M. N. R. Ashfold.
    Chem. Phys. Lett. 326 (2000), 22−32.

  18. The dynamics of the hydrogen exchange reaction at 2.20 eV collision energy: Comparison of experimental and theoretical differential cross sections.
    E. Wrede, L. Schnieder, K. H. Welge, F. J. Aoiz, L. Bañares, V. J. Herrero, and B. Martínez-Haya.
    J. Chem. Phys. 110 (1999), 9971−9981.

  19. Ion imaging studies of the Br(2PJ) atomic products resulting from Br2 photolysis in the wavelength range 260−580 nm.
    M. J. Cooper, E. Wrede, A. J. Orr-Ewing, and M. N. R. Ashfold.
    J. Chem. Soc., Faraday Trans. 94 (1998), 2901−2907.

  20. Dissociation dynamics of acetylene Rydberg states as a function of excited state lifetime.
    P. Löffler, E. Wrede, L. Schnieder, J. B. Halpern, W. M. Jackson, and K. H. Welge.
    J. Chem. Phys. 109 (1998), 5231−5246.

  21. Experimental and quantum mechanical study of the H + D2 reaction near 0.5 eV: The assessment of the H3 potential energy surfaces.
    L. Bañares, M. J. D'Mello, F. J. Aoiz, V. J. Herrero, B. Niederjohann, K. Seekamp-Rahn, E. Wrede, and L. Schnieder.
    J. Chem. Phys. 108 (1998), 6160−6169.

  22. Experimental determination of quantum state resolved differential cross sections for the hydrogen exchange reaction H + D2 → HD + D.
    L. Schnieder, K. Seekamp-Rahn, E. Wrede, and K. H. Welge.
    J. Chem. Phys. 107 (1997), 6175−6195.

  23. On the appearance of resonances in reactive scattering. An experimental study of the H + D2 → HD + D reaction at collision energies near 1.29 eV.
    E. Wrede and L. Schnieder.
    J. Chem. Phys. 107 (1997), 786−790.

  24. The H + D2 reaction in the vicinity of the conical intersection.
    E. Wrede, L. Schnieder, K. H. Welge, F. J. Aoiz, L. Bañares, V. J. Herrero, B. Martínez-Haya, and V. Sáez Rábanos.
    J. Chem. Phys. 106 (1997), 7862−7864.

  25. High resolution study of the H + D2 → HD + D reaction dynamics at a collision energy of 2.2 eV.
    E. Wrede, L. Schnieder, K. H. Welge, F. J. Aoiz, L. Bañares, and V. J. Herrero.
    Chem. Phys. Lett. 265 (1997), 129−136.

  26. Photofragment action spectroscopy of the acetylene molecule in the vacuum ultraviolet.
    P. Löffler, D. Lacombe, A. Ross, E. Wrede, L. Schnieder, and K. H. Welge.
    Chem. Phys. Lett. 252 (1996), 304−310.

  27. Experimental Studies and Theoretical Predictions for the H + D2 → HD + D Reaction.
    L. Schnieder, K. Seekamp-Rahn, J. Borkowski, E. Wrede, K. H. Welge, F. J. Aoiz, L. Bañares, M. J. D'Mello, V. J. Herrero, V. Sáez Rábanos, and R. E. Wyatt.
    Science 269 (1995), 207−210.


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