4.5 Article

Two-Photon STED Spectral Determination for a New V-Shaped Organic Fluorescent Probe with Efficient Two-Photon Absorption

期刊

CHEMPHYSCHEM
卷 12, 期 15, 页码 2755-2762

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/cphc.201100456

关键词

absorption; fluorescence; fluorene derivatives; laser scanning fluorescence microscopy; two-photon stimulated emission depletion

资金

  1. National Institute of Biomedical Imaging and Bioengineering of the National Institutes of Health [1 R15 EB008858-01]
  2. National Academy of Sciences of Ukraine [1.4.1. B/153]
  3. National Science Foundation [ECCS-0925712, CHE-0840431, CHE-0832622]

向作者/读者索取更多资源

Two-photon stimulated emission depletion (STED) cross sections were determined over a broad spectral range for a novel two-photon absorbing organic molecule, representing the first such report. The synthesis, comprehensive linear photophysical, two-photon absorption (2PA), and stimulated emission properties of a new fluorene-based compound, (E)-2-{3-[2-(7(diphenylamino)-9,9-diethyl-9H-fluoren-2-yl)vinyl]-5-methyl-4-oxocyclohexa-2,5-dienylidene} malononitrile (1), are presented. Linear spectral parameters, including excitation anisotropy and fluorescence lifetimes, were obtained over a broad range of organic solvents at room temperature. The degenerate two-photon absorption (2PA) spectrum of 1 was determined with a combination of the direct open-aperture Z-scan and relative two-photon-induced fluorescence methods using 1 kHz femtosecond excitation. The maximum value of the 2PA cross section similar to 1700 GM was observed in the main, long wavelength, one-photon absorption band. One-and two-photon stimulated emission spectra of 1 were obtained over a broad spectral range using a femtosecond pump-probe technique, resulting in relatively high two-photon stimulated emission depletion cross sections (similar to 1200 GM). A potential application of 1 in bioimaging was demonstrated through one-and two-photon fluorescence microscopy images of HCT 116 cells incubated with micelle-encapsulated dye.

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