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Hybrid nanoparticles based on sulfides, oxides, and carbides
Authors
A A Klochikhin
A A Lemke
+84 more
A A Rempel
A A Rempel
A A Rempel
A A Rempel
A A Rempel
A A Rempel
A A Rempel
A A Rempel
A A Rempel
A A Rempel
A A Valeeva
A A Valeeva
A A Valeeva
A A Valeeva
A A Valeeva
A F Guillermet
A I Gusev
A I Gusev
A I Gusev
A I Gusev
A Kumar
A L Buchachenko
A M Smith
A M Smith
A P Alivisatos
A Rempel
A S Kurlov
A S Kurlov
A S Kurlov
A S Vorokh
A S Vorokh
A. A. Rempel
B E Warren
C Salazara
D V Labyrina
E A Kozlova
G A Kitaev
G Mountrichas
H Gleiter
H M Rietveld
H-E Schaefer
H-E Schaefer
I S Osad’ko
L E McCandlish
L I Klyachko
L N Larikov
L Spanhel
L Wu
M G Kostenko
M G Kostenko
M G Kostenko
N G Piven
N M Dyatlova
N S Kozhevnikova
N S Kozhevnikova
N S Kozhevnikova
N S Kozhevnikova
N S Kozhevnikova
R A Andrievskii
R A Andrievskiy
R Vogel
R W Siegel
S I Sadovnikov
S S Voyutskii
S V Rempel
S V Rempel
S V Rempel
S V Rempel
S V Rempel
Sh Higashimoto
U Xianlu
V A Oleinikov
V Keller
V P Ananikov
V Schöllmann
W H Hall
W H Hall
W Schedler
X Chen
X Gao
Y Bessekhouad
Yu D Tret’yakov
Yu I Petrov
Z Zak Fang
Publication date
1 January 2013
Publisher
'Springer Science and Business Media LLC'
Doi
Abstract
The methods for synthesis of hybrid nanoparticles based on sulfides, oxides, and carbides of heavy and transition metals were considered. The problem of the influence of the method of synthesis of the hybrid nanoparticles on their atomic structure, morphology of the nanomaterials, and functional properties was analyzed. The areas of practical use of the hybrid nanoparticles were proposed. © 2013 Springer Science+Business Media New York
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info:doi/10.1007%2Fs11172-013-...
Last time updated on 01/04/2019
Institutional repository of Ural Federal University named after the first President of Russia B.N.Yeltsin
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Last time updated on 02/06/2016