Simulation of the resonance Raman spectrum of the hydrated electron in the hydrated-hydronium cluster model

Neumann S, Eisfeld W, Sobolewski A, Domcke W (2004)
PHYSICAL CHEMISTRY CHEMICAL PHYSICS 6(23): 5297-5303.

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Neumann S, Eisfeld W, Sobolewski A, Domcke W. Simulation of the resonance Raman spectrum of the hydrated electron in the hydrated-hydronium cluster model. PHYSICAL CHEMISTRY CHEMICAL PHYSICS. 2004;6(23):5297-5303.
Neumann, S., Eisfeld, W., Sobolewski, A., & Domcke, W. (2004). Simulation of the resonance Raman spectrum of the hydrated electron in the hydrated-hydronium cluster model. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 6(23), 5297-5303.
Neumann, S., Eisfeld, W., Sobolewski, A., and Domcke, W. (2004). Simulation of the resonance Raman spectrum of the hydrated electron in the hydrated-hydronium cluster model. PHYSICAL CHEMISTRY CHEMICAL PHYSICS 6, 5297-5303.
Neumann, S., et al., 2004. Simulation of the resonance Raman spectrum of the hydrated electron in the hydrated-hydronium cluster model. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 6(23), p 5297-5303.
S. Neumann, et al., “Simulation of the resonance Raman spectrum of the hydrated electron in the hydrated-hydronium cluster model”, PHYSICAL CHEMISTRY CHEMICAL PHYSICS, vol. 6, 2004, pp. 5297-5303.
Neumann, S., Eisfeld, W., Sobolewski, A., Domcke, W.: Simulation of the resonance Raman spectrum of the hydrated electron in the hydrated-hydronium cluster model. PHYSICAL CHEMISTRY CHEMICAL PHYSICS. 6, 5297-5303 (2004).
Neumann, S, Eisfeld, Wolfgang, Sobolewski, A, and Domcke, W. “Simulation of the resonance Raman spectrum of the hydrated electron in the hydrated-hydronium cluster model”. PHYSICAL CHEMISTRY CHEMICAL PHYSICS 6.23 (2004): 5297-5303.
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