4.6 Article

Interfacial electron transfer dynamics in dye-modified graphene oxide nanosheets studied by single-molecule fluorescence spectroscopy

期刊

PHYSICAL CHEMISTRY CHEMICAL PHYSICS
卷 14, 期 12, 页码 4244-4249

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/c2cp23317g

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资金

  1. Ministry of Education, Science and Technology through the National Research Foundation of Korea [R31-2011-000-10035-0]
  2. Innovative Project for Advanced Instruments
  3. Renovation Center of Instruments for Science Education and Technology
  4. Osaka University
  5. Ministry of Education, Culture, Sports, Science and Technology (MEXT) of the Japanese Government [22245022]
  6. Grants-in-Aid for Scientific Research [23655009, 22245022] Funding Source: KAKEN

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Graphene oxide (GO) nanosheets have received a great deal of attention for a wide range of applications from optoelectronic devices to biological sensors. We now report a mechanistic study of the interfacial electron transfer (ET) processes between organic dye molecule, 9-phenyl-2,3,7-trihydroxy-6-fluorone (PF), and nanometre-sized GO sheets using ensemble-averaged and single-molecule spectroscopies. The ET dynamics was characterized by the direct observation of the PF radical cation during the laser flash photolysis, and its reaction rate was determined to be similar to 10(11) s(-1). The single-molecule fluorescence spectroscopy was utilized to clarify the heterogeneous nature of the interfacial ET within individual composites. Their fluorescence lifetimes and spectra were found to vary from composite to composite, possibly due to the different local structures and molecular interactions. The autocorrelation analysis of fluorescence intensity trajectories also revealed the temporal fluctuation of the ET reactivity.

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