Energy Transfer in Ce0.85Tb0.15F3 Nanoparticles-CTAB Shell-Chlorin e6 System

Abstract Formation and electronic excitation energy transfer process in the nanosystem consisting of Ce0.85Tb0.15F3 nanoparticles, cetrimonium bromide (CTAB) surfactant, and chlorin e6 photosensitizer were studied. It was shown that chlorin e6 molecules bind to Ce0.85Tb0.15F3 NP in the presence of C...

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Main Authors: Mykhaylo Yu. Losytskyy, Liliia V. Kuzmenko, Oleksandr B. Shcherbakov, Nikolai F. Gamaleia, Andrii I. Marynin, Valeriy M. Yashchuk
Format: Article
Language:English
Published: SpringerOpen 2017-04-01
Series:Nanoscale Research Letters
Subjects:
Online Access:http://link.springer.com/article/10.1186/s11671-017-2077-x
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spelling doaj-96d5c6d36b8b449484e1e137013222ff2020-11-25T00:55:21ZengSpringerOpenNanoscale Research Letters1931-75731556-276X2017-04-011211710.1186/s11671-017-2077-xEnergy Transfer in Ce0.85Tb0.15F3 Nanoparticles-CTAB Shell-Chlorin e6 SystemMykhaylo Yu. Losytskyy0Liliia V. Kuzmenko1Oleksandr B. Shcherbakov2Nikolai F. Gamaleia3Andrii I. Marynin4Valeriy M. Yashchuk5Taras Shevchenko National University of KyivTaras Shevchenko National University of KyivZabolotny Institute of Microbiology and Virology, NAS of UkraineR.E. Kavetsky Institute for Experimental Pathology, Oncology and Radiobiology, NAS of UkraineNational University of Food TechnologiesTaras Shevchenko National University of KyivAbstract Formation and electronic excitation energy transfer process in the nanosystem consisting of Ce0.85Tb0.15F3 nanoparticles, cetrimonium bromide (CTAB) surfactant, and chlorin e6 photosensitizer were studied. It was shown that chlorin e6 molecules bind to Ce0.85Tb0.15F3 NP in the presence of CTAB forming thus Ce0.85Tb0.15F3 NP-CTAB-chlorin e6 nanosystem. We consider that binding occurs via chlorin e6 embedding in the shell of CTAB molecules, formed around NP. In the Ce0.85Tb0.15F3 NP-CTAB-chlorin e6 nanosystem, electronic excitation energy transfer from Ce3+ to chlorin e6 takes place both directly (with the 0.33 efficiency for 2 μM chlorin e6) and via Tb3+.http://link.springer.com/article/10.1186/s11671-017-2077-xCe0.85Tb0.15F3 nanoparticlesChlorin e6Electronic excitation energy transferPhotodynamic therapy
collection DOAJ
language English
format Article
sources DOAJ
author Mykhaylo Yu. Losytskyy
Liliia V. Kuzmenko
Oleksandr B. Shcherbakov
Nikolai F. Gamaleia
Andrii I. Marynin
Valeriy M. Yashchuk
spellingShingle Mykhaylo Yu. Losytskyy
Liliia V. Kuzmenko
Oleksandr B. Shcherbakov
Nikolai F. Gamaleia
Andrii I. Marynin
Valeriy M. Yashchuk
Energy Transfer in Ce0.85Tb0.15F3 Nanoparticles-CTAB Shell-Chlorin e6 System
Nanoscale Research Letters
Ce0.85Tb0.15F3 nanoparticles
Chlorin e6
Electronic excitation energy transfer
Photodynamic therapy
author_facet Mykhaylo Yu. Losytskyy
Liliia V. Kuzmenko
Oleksandr B. Shcherbakov
Nikolai F. Gamaleia
Andrii I. Marynin
Valeriy M. Yashchuk
author_sort Mykhaylo Yu. Losytskyy
title Energy Transfer in Ce0.85Tb0.15F3 Nanoparticles-CTAB Shell-Chlorin e6 System
title_short Energy Transfer in Ce0.85Tb0.15F3 Nanoparticles-CTAB Shell-Chlorin e6 System
title_full Energy Transfer in Ce0.85Tb0.15F3 Nanoparticles-CTAB Shell-Chlorin e6 System
title_fullStr Energy Transfer in Ce0.85Tb0.15F3 Nanoparticles-CTAB Shell-Chlorin e6 System
title_full_unstemmed Energy Transfer in Ce0.85Tb0.15F3 Nanoparticles-CTAB Shell-Chlorin e6 System
title_sort energy transfer in ce0.85tb0.15f3 nanoparticles-ctab shell-chlorin e6 system
publisher SpringerOpen
series Nanoscale Research Letters
issn 1931-7573
1556-276X
publishDate 2017-04-01
description Abstract Formation and electronic excitation energy transfer process in the nanosystem consisting of Ce0.85Tb0.15F3 nanoparticles, cetrimonium bromide (CTAB) surfactant, and chlorin e6 photosensitizer were studied. It was shown that chlorin e6 molecules bind to Ce0.85Tb0.15F3 NP in the presence of CTAB forming thus Ce0.85Tb0.15F3 NP-CTAB-chlorin e6 nanosystem. We consider that binding occurs via chlorin e6 embedding in the shell of CTAB molecules, formed around NP. In the Ce0.85Tb0.15F3 NP-CTAB-chlorin e6 nanosystem, electronic excitation energy transfer from Ce3+ to chlorin e6 takes place both directly (with the 0.33 efficiency for 2 μM chlorin e6) and via Tb3+.
topic Ce0.85Tb0.15F3 nanoparticles
Chlorin e6
Electronic excitation energy transfer
Photodynamic therapy
url http://link.springer.com/article/10.1186/s11671-017-2077-x
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