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Article Dans Une Revue Physical Chemistry Chemical Physics Année : 2015

A comprehensive study of cold protonated tyramine: UV photodissociation experiments and ab initio calculations

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A comprehensive study of cold protonated tyramine: UV photodissociation experiments and ab initio calculations † Michel Broquier, ab Satchin Soorkia a and Gilles Gré goire* a We present a comprehensive experimental study of protonated tyramine ions in a cold 3D quadrupole ion trap coupled to a time-of-flight mass spectrometer. Multiple UV photodissociation techniques have been developed, including single and double resonance spectroscopy along with time-resolved excited state lifetime measurements through a picosecond pump–probe scheme. An original UV–UV hole burning method is presented which can be used without modification of the quadrupole ion trap. The electronic spectrum of the cold protonated tyramine exhibits well-defined vibronic transitions, allowing the firm assignment of its two low-lying energy conformations by comparison with CC2 ab initio excited state calculations.
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hal-01214627 , version 1 (13-10-2015)

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Michel Broquier, Satchin Soorkia, Gilles Grégoire. A comprehensive study of cold protonated tyramine: UV photodissociation experiments and ab initio calculations. Physical Chemistry Chemical Physics, 2015, 17 (39), pp.25854-25862. ⟨10.1039/c5cp01375e⟩. ⟨hal-01214627⟩
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