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Solute migration caused by excited state absorptions

  • Che Kai Chang
  • , Yi Ci Li
  • , Chen Wei Chen
  • , Li Shu Lee
  • , Jaw Luen Tang
  • , Chi Chen Wang
  • , Chang Chi Leu
  • , Tai Huei Wei*
  • , Tzer Hsiang Huang
  • , Yinglin Song
  • *Corresponding author for this work
  • National Chung Cheng University

Research output: Contribution to journalArticlepeer-review

Abstract

Using the Z -scan technique, we find that migration of chloroaluminum phthalocyanine in liquid ethanol can be induced by the absorption of a 19 ps laser pulse with energy exceeding a threshold but not by that of a 2.8 ns pulse depositing more energy at the solute molecules. Considering each solute molecule as an oscillator confined within a potential well, we explain, in accordance with the five-energy-band model, that solute molecules excited by a 19 ps pulse retain more translational excess energy to overcome the potential well barrier compared with those excited by a 2.8 ns pulse of equal energy. Therefore, they are more likely to migrate out of the laser beam center, weakening the solution's absorption that we detect in the Z -scan measurements. Furthermore, we theoretically infer that the 19 ps pulse-induced solute migration tends to be nonquasistatic and experimentally verify that it cannot be attributed to the Soret effect, a quasistatic process.

Original languageEnglish
Article number024511
JournalJournal of Chemical Physics
Volume130
Issue number2
DOIs
StatePublished - 2009

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