We present an assigned spectrum of the first electronic transition of m-xylene observed by resonance-enhanced multiphoton ionization in a time-of-flight mass spectrometer. The band origin of the S-1 <-- S-0 electronic transition is found to be 36951 cm(-1). These vibrationally resolved spectral features have been successfully assigned on the basis of comparison with the results from ab initio and density functional theory calculations. These suggest that the substituents on benzene ring can influence the electronic transition and molecular vibrational modes of m-xylene. The spectrum shows a rich structure and some vibrational frequencies of S-1 state are determined. (C) 2004 Elsevier B.V. All rights reserved.
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Institute of Coal Chemistry, Chinese Academy of Science, Taiyuan 030001, ChinaInstitute of Coal Chemistry, Chinese Academy of Science, Taiyuan 030001, China
Zhao, Liangfu
Zhao, Yulong
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Institute of Coal Chemistry, Chinese Academy of Science, Taiyuan 030001, ChinaInstitute of Coal Chemistry, Chinese Academy of Science, Taiyuan 030001, China
Zhao, Yulong
Lu, Zhaohui
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Institute of Coal Chemistry, Chinese Academy of Science, Taiyuan 030001, ChinaInstitute of Coal Chemistry, Chinese Academy of Science, Taiyuan 030001, China
Lu, Zhaohui
Zhang, Bijiang
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Institute of Coal Chemistry, Chinese Academy of Science, Taiyuan 030001, ChinaInstitute of Coal Chemistry, Chinese Academy of Science, Taiyuan 030001, China