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Slyusarenko, N. V.
Gerasimova, M. A.
Slabko, V. V.
Slyusareva, E. A.
2018-02-07T07:31:14Z
2018-02-07T07:31:14Z
2017-07
Slyusarenko, N. V. Temperature Sensitivity of Water-Soluble CdTe and CdSe/ZnS Quantum Dots Incorporated into Biopolymer Submicron Particles [Текст] / N. V. Slyusarenko, M. A. Gerasimova, V. V. Slabko, E. A. Slyusareva // Russian Physics Journal. — 2017. — Т. 60 (№ 3).
10648887
https://www.scopus.com/record/display.uri?eid=2-s2.0-85023180815&origin=resultslist&sort=plf-f&src=s&st1=Slyusareva&st2=E&nlo=1&nlr=20&nls=&affilName=Siberian+Federal+University&sid=3a5949c2f38df2aefe425453856ff17d&sot=anl&sdt=aut&sl=43&s=AU-ID%28%22Slyusareva%2c+Evgenia+A.%22+23006836900%29&relpos=0&citeCnt=0&searchTerm=
https://elib.sfu-kras.ru/handle/2311/70010
Polymer particles with sizes 0.3–0.4 μm are synthesized based on chitosan and chondroitin sulfate with incorporated CdTe (core) and CdSe/ZnS (core–shell) quantum dots. Their morphological and spectral properties are investigated by the methods of dynamic scattering, electron microscopy, and absorption and luminescence spectroscopy at temperatures from 10 to 80°С. Spectral effects associated with a change in temperature (a red shift and a decrease in the amplitude of the photoluminescence spectrum) can be explained by the temperature expansion of the quantum dots and activation of surface traps. It is shown that the temperature sensitivity of spectra of the quantum dots incorporated into the biopolymer particles is not less than in water. To develop an optical temperature sensor, the core quantum dots are more preferable than the core–shell quantum dots
quantum dots
polymer particles
absorption
photoluminescence
temperature sensor
Temperature Sensitivity of Water-Soluble CdTe and CdSe/ZnS Quantum Dots Incorporated into Biopolymer Submicron Particles
Journal Article
Journal Article Preprint
29.19.22
2018-02-07T07:31:14Z
10.1007/s11182-017-1097-4
Институт инженерной физики и радиоэлектроники
Базовая кафедра фотоники и лазерных технологий
Кафедра общей физики
Russian Physics Journal
Q3
Q4


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