Access count of this item: 287

Files in This Item:
File Description SizeFormat 
1.4960385.pdf3.27 MBAdobe PDFView/Open
Title: Charge-transfer-to-solvent reactions from I- to water, methanol, and ethanol studied by time-resolved photoelectron spectroscopy of liquids
Authors: Okuyama, Haruki
Suzuki, Yoshi Ichi
Karashima, Shutaro
Suzuki, Toshinori  kyouindb  KAKEN_id
Author's alias: 唐島, 秀太郎
鈴木, 俊法
Issue Date: 21-Aug-2016
Publisher: American Institute of Physics
Journal title: Journal of Chemical Physics
Volume: 145
Thesis number: 074502
Abstract: The charge-transfer-to-solvent (CTTS) reactions from iodide (I-) to H2O, D2O, methanol, and ethanol were studied by time-resolved photoelectron spectroscopy of liquid microjets using a magnetic bottle time-of-flight spectrometer with variable pass energy. Photoexcited iodide dissociates into a weak complex (a contact pair) of a solvated electron and an iodine atom in similar reaction times, 0.3 ps in H2O and D2O and 0.5 ps in methanol and ethanol, which are much shorter than their dielectric relaxation times. The results indicate that solvated electrons are formed with minimal solvent reorganization in the long-range solvent polarization field created for I-. The photoelectron spectra for CTTS in H2O and D2O - measured with higher accuracy than in our previous study [Y. I. Suzuki et al., Chem. Sci. 2, 1094 (2011)] - indicate that internal conversion yields from the photoexcited I-star (CTTS) state are less than 10%, while alcohols provide 2-3 times greater yields of internal conversion from I-star. The overall geminate recombination yields are found to be in the order of H2O > D2O > methanol > ethanol, which is opposite to the order of the mutual diffusion rates of an iodine atom and a solvated electron. This result is consistent with the transition state theory for an adiabatic outer-sphere electron transfer process, which predicts that the recombination reaction rate has a pre-exponential factor inversely proportional to a longitudinal solvent relaxation time.
Rights: This article may be downloaded for personal use only. Any other use requires prior permission of the author and AIP Publishing. The following article appeared in 'The Journal of Chemical Physics 145, 044306 (2016)' and may be found at https://aip.scitation.org/doi/10.1063/1.4960385.
The full-text file will be made open to the public on 21 August 2017 in accordance with publisher's 'Terms and Conditions for Self-Archiving'
URI: http://hdl.handle.net/2433/230213
DOI(Published Version): 10.1063/1.4960385
PubMed ID: 27544114
Appears in Collections:Journal Articles

Show full item record

Export to RefWorks


Export Format: 


Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.