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Noncovalent assemblies of CdSe semiconductor quantum dots and an amphiphilic long-chain meso-arylporphyrin

Kseniya Aleksandrovna Zhdanova 1
Kseniya Aleksandrovna Zhdanova
Natal'ya Aleksandrovna Bragina 1
Natal'ya Aleksandrovna Bragina
Victor Nikolaevich Bagratashvili 2
Victor Nikolaevich Bagratashvili
Petr Sergeevich Timashev 1, 2
Petr Sergeevich Timashev
Andrey Fedorovich Mironov 1
Andrey Fedorovich Mironov
Published 2014-06-25
CommunicationVolume 24, Issue 4, 247-249
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Zhdanova K. A. et al. Noncovalent assemblies of CdSe semiconductor quantum dots and an amphiphilic long-chain meso-arylporphyrin // Mendeleev Communications. 2014. Vol. 24. No. 4. pp. 247-249.
GOST all authors (up to 50) Copy
Zhdanova K. A., Bragina N. A., Bagratashvili V. N., Timashev P. S., Mironov A. F. Noncovalent assemblies of CdSe semiconductor quantum dots and an amphiphilic long-chain meso-arylporphyrin // Mendeleev Communications. 2014. Vol. 24. No. 4. pp. 247-249.
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TY - JOUR
DO - 10.1016/j.mencom.2014.06.021
UR - https://mendcomm.colab.ws/publications/10.1016/j.mencom.2014.06.021
TI - Noncovalent assemblies of CdSe semiconductor quantum dots and an amphiphilic long-chain meso-arylporphyrin
T2 - Mendeleev Communications
AU - Zhdanova, Kseniya Aleksandrovna
AU - Bragina, Natal'ya Aleksandrovna
AU - Bagratashvili, Victor Nikolaevich
AU - Timashev, Petr Sergeevich
AU - Mironov, Andrey Fedorovich
PY - 2014
DA - 2014/06/25
PB - Mendeleev Communications
SP - 247-249
IS - 4
VL - 24
ER -
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@article{2014_Zhdanova,
author = {Kseniya Aleksandrovna Zhdanova and Natal'ya Aleksandrovna Bragina and Victor Nikolaevich Bagratashvili and Petr Sergeevich Timashev and Andrey Fedorovich Mironov},
title = {Noncovalent assemblies of CdSe semiconductor quantum dots and an amphiphilic long-chain meso-arylporphyrin},
journal = {Mendeleev Communications},
year = {2014},
volume = {24},
publisher = {Mendeleev Communications},
month = {Jun},
url = {https://mendcomm.colab.ws/publications/10.1016/j.mencom.2014.06.021},
number = {4},
pages = {247--249},
doi = {10.1016/j.mencom.2014.06.021}
}
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Zhdanova, Kseniya Aleksandrovna, et al. “Noncovalent assemblies of CdSe semiconductor quantum dots and an amphiphilic long-chain meso-arylporphyrin.” Mendeleev Communications, vol. 24, no. 4, Jun. 2014, pp. 247-249. https://mendcomm.colab.ws/publications/10.1016/j.mencom.2014.06.021.

Abstract

The spectroluminescent properties of the noncovalent assemblies of CdSe semiconductor quantum dots with 5-(4-pyridyl)-10,15,20-tris(4-n-octaoxyphenyl)porphyrin and the efficiency of energy transfer from the quantum dots to the porphyrin molecule by the Förster resonant energy transfer mechanism were evaluated.

References

1.
Energy transfer from quantum dots to metal-organic frameworks for enhanced light harvesting.
Jin S., Son H., Farha O.K., Wiederrecht G.P., Hupp J.T.
Journal of the American Chemical Society, 2013
3.
Fluorescence Switching of Quantum Dot in Quantum Dot–Porphyrin–Cucurbit [7] Uril Assemblies
Mandal S., Rahaman M., Sadhu S., Nayak S.K., Patra A.
Journal of Physical Chemistry C, 2013
4.
Porphyrin decorated CdSe quantum dots for direct fluorescent sensing of metal ions
Frasco M.F., Vamvakaki V., Chaniotakis N.
Journal of Nanoparticle Research, 2009
5.
Quantitative Analysis of Singlet Oxygen (1O2) Generation via Energy Transfer in Nanocomposites Based on Semiconductor Quantum Dots and Porphyrin Ligands
Zenkevich E.I., Sagun E.I., Knyukshto V.N., Stasheuski A.S., Galievsky V.A., Stupak A.P., Blaudeck T., von Borczyskowski C.
Journal of Physical Chemistry C, 2011
6.
Biocompatible CdSe quantum dot-based photosensitizer under two-photon excitation for photodynamic therapy
Qi Z., Li D., Jiang P., Jiang F., Li Y., Liu Y., Wong W., Cheah K.
Journal of Materials Chemistry A, 2011
7.
Light harvesting and energy transfer in multiporphyrin-modified CdSe nanoparticles.
Kang S., Yasuda M., Miyasaka H., Hayashi H., Kawasaki M., Umeyama T., Matano Y., Yoshida K., Isoda S., Imahori H.
ChemSusChem, 2008
8.
Photophysical studies of CdTe quantum dots in the presence of a zinc cationic porphyrin.
Keane P.M., Gallagher S.A., Magno L.M., Leising M.J., Clark I.P., Greetham G.M., Towrie M., Gun'ko Y.K., Kelly J.M., Quinn S.J.
Dalton Transactions, 2012
10.
Supramolecular Complexes from CdSe Nanocrystals and Organic Fluorophors
Schmelz O., Mews A., Basché T., Herrmann A., Müllen K.
Langmuir, 2001
13.
Fedulova I.N., Bragina N.A., Novikov N.V., Mironov A.F., Bykova V.V., Usol’tseva N.V., Ananieva G.A.
Mendeleev Communications, 2008
14.
Synthesis of Novel Fullerene-Porphyrin Conjugates for the Formation of Langmuir Monolayers
Zyablikova E.S., Bragina N.A., Mironov A.F., Silant’eva D.A., Selektor S.L.
Macroheterocycles, 2012
15.
10.1016/j.mencom.2014.06.021_bib0075
Sun
Front. Chem. Eng. China, 2008
16.
10.1016/j.mencom.2014.06.021_bib0080
Lakowicz
Principles of Fluorescence Spectroscopy, 1999
17.
Formation of QD-porphyrin molecule complexes in aqueous solutions
Orlova A.O., Maslov V.G., Stepanov A.A., Gounko I., Baranov A.V.
Optics and Spectroscopy (English translation of Optika i Spektroskopiya), 2008
18.
10.1016/j.mencom.2014.06.021_bib0090
Valeur
Molecular Fluorescence Principles and Applications, 2002
19.
http://www.photobiology.info/Experiments/Biolum-Expt.html.
20.
Synthesis of lipophilic tetraphenylporphyrins to design lipid-porphyrin ensembles
Fedulova I.N., Bragina N.A., Novikov N.V., Ugol’nikova O.A., Mironov A.F.
Russian Journal of Bioorganic Chemistry, 2007