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Journal Article (7)

Journal Article
Krüger, B. C.; Bartels, N.; Wodtke, A. M.; Schäfer, T.: Final rotational state distributions from NO(v(i)=11) in collisions with Au(111): The magnitude of vibrational energy transfer depends on orientation in molecule-surface collisions. Physical Chemistry Chemical Physics 18 (22), pp. 14976 - 14979 (2016)
Journal Article
Golibrzuch, K.; Bartels, N.; Auerbach, D. J.; Wodtke, A. M.: The dynamics of molecular interactions and chemical reactions at metal surfaces: Testing the foundations of theory. Annual Review of Physical Chemistry 66, pp. 399 - 425 (2015)
Journal Article
Krüger, B. C.; Bartels, N.; Bartels, C.; Kandratsenka, A.; Tully, J. C.; Wodtke, A. M.; Schäfer, T.: NO vibrational energy transfer on a metal surface: Still a challenge to first-principles theory. The Journal of Physical Chemistry C 119 (6), pp. 3268 - 3272 (2015)
Journal Article
Bartels, N.; Krüger, B. C.; Auerbach, D. J.; Wodtke, A. M.; Schäfer, T.: Controlling an electron-transfer reaction at a metal surface by manipulating reactant motion and orientation. Angewandte Chemie International Edition 53 (50), pp. 13690 - 13694 (2014)
Journal Article
Schäfer, T.; Bartels, N.; Golibrzuch., K.; Bartels, C.; Köckert, H.; Auerbach, D. J.; Kitsopoulos, T. N.; Wodtke, A. M.: Observation of direct vibrational excitation in gas-surface collisions of CO with Au(111): a new model system for surface dynamics. Physical Chemistry Chemical Physics 15 (6), pp. 1863 - 1867 (2013)
Journal Article
Schäfer, T.; Bartels, N.; Hocke, N.; Yang, X.; Wodtke, A. M.: Orienting polar molecules without hexapoles: optical state selection with adiabatic orientation. Chemical Physics Letters 535, pp. 1 - 11 (2012)
Journal Article
Bartels, N.; Schäfer, T.; Hühnert , J.; Field, R. W.; Wodtke, A. M.: Production of a beam of highly vibrationally excited CO using perturbations. The Journal of Chemical Physics 136 (21), 214201 (2012)

Thesis - PhD (1)

Thesis - PhD
Bartels, N.: Orientation-dependent energy transfer in gas-surface collisions: Scattering of vibrationally excited nitric oxide from Au(111). Dissertation, Georg-August-Universität, Göttingen (2015)
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