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Deniz, E.; Cusido, J.; Tomasulo, M.; Battal, M.; Yildiz, I.; Petriella, M.; Bossi, M.L.; Sortino, S.; Raymo, F.M. "Strategies to switch fluorescence with photochromic oxazines" (2013) Organic Synthesis and Molecular Engineering:197-212
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Abstract:

Photochromic compounds switch reversibly between states with distinct absorption properties in the visible region under the influence of optical stimulation. This chapter deals with switching of fluorescence with photochromic oxazines. It describes the design and synthesis of fluorophore-oxazine dyads, and discusses fluorescence activation with fluorophore-oxazine dyads. The unique combination of photochemical and photophysical properties associated with the fluorophore-photochrome dyads entrapped within the micelles offers the opportunity to overcome diffraction and resolve structural features at the nanoscale. Our strategies for fluorescence activation with photochromic oxazines can eventually lead to the realization of an entire family of photoswitchable fluorophores for the visualization of biological samples with subdiffraction resolution. © 2014 John Wiley & Sons, Inc. All rights reserved.

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Documento: Parte de libro
Título:Strategies to switch fluorescence with photochromic oxazines
Autor:Deniz, E.; Cusido, J.; Tomasulo, M.; Battal, M.; Yildiz, I.; Petriella, M.; Bossi, M.L.; Sortino, S.; Raymo, F.M.
Filiación:Department of Chemistry, University of Miami, Coral Gables, FL, United States
INQUIMAE, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Buenos Aires, Argentina
Department of Drug Sciences, University of Catania, Catania, Italy
Palabras clave:Fluorescence activation; Fluorophore-oxazine dyads; Photochromic oxazines; Subdiffraction resolution; Chemical activation; Fluorescence; Photochromism; Absorption property; Biological samples; Optical stimulation; Photochromic compound; Photochromic oxazines; Photophysical properties; Structural feature; Sub-diffraction; Fluorophores
Año:2013
Página de inicio:197
Página de fin:212
DOI: http://dx.doi.org/10.1002/9781118736449.ch7
Título revista:Organic Synthesis and Molecular Engineering
Título revista abreviado:Org. Synth. and Mol. Eng.
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_97811187_v_n_p197_Deniz

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Citas:

---------- APA ----------
Deniz, E., Cusido, J., Tomasulo, M., Battal, M., Yildiz, I., Petriella, M., Bossi, M.L.,..., Raymo, F.M. (2013) . Strategies to switch fluorescence with photochromic oxazines. Organic Synthesis and Molecular Engineering, 197-212.
http://dx.doi.org/10.1002/9781118736449.ch7
---------- CHICAGO ----------
Deniz, E., Cusido, J., Tomasulo, M., Battal, M., Yildiz, I., Petriella, M., et al. "Strategies to switch fluorescence with photochromic oxazines" . Organic Synthesis and Molecular Engineering (2013) : 197-212.
http://dx.doi.org/10.1002/9781118736449.ch7
---------- MLA ----------
Deniz, E., Cusido, J., Tomasulo, M., Battal, M., Yildiz, I., Petriella, M., et al. "Strategies to switch fluorescence with photochromic oxazines" . Organic Synthesis and Molecular Engineering, 2013, pp. 197-212.
http://dx.doi.org/10.1002/9781118736449.ch7
---------- VANCOUVER ----------
Deniz, E., Cusido, J., Tomasulo, M., Battal, M., Yildiz, I., Petriella, M., et al. Strategies to switch fluorescence with photochromic oxazines. Org. Synth. and Mol. Eng. 2013:197-212.
http://dx.doi.org/10.1002/9781118736449.ch7