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Statements

Subject Item
n2:RIV%2F68378271%3A_____%2F09%3A00335836%21RIV10-AV0-68378271
rdf:type
n8:Vysledek skos:Concept
dcterms:description
A possible improvement of the MFH technique consists in using more complex magnetic oxides such as: (i) cobalt ferrite and derived phases whose magnetic properties depend on the composition and coercivity is essentially controlled by the magnetocrystalline and/or shape anisotropy, (ii) La1 xSrxMnO3 perovskites whose magnetic properties are influenced by the composition and crystallite size, and (iii) SrFe12O19/g-Fe2O3 composites whose magnetic properties are mainly controlled by the ratio of the respective magnetic phases. Our main results concerning the synthesis of these compounds in the form of submicronic particles, their magnetic properties and their heating abilities are summarized, compared and discussed in this paper. A possible improvement of the MFH technique consists in using more complex magnetic oxides such as: (i) cobalt ferrite and derived phases whose magnetic properties depend on the composition and coercivity is essentially controlled by the magnetocrystalline and/or shape anisotropy, (ii) La1 xSrxMnO3 perovskites whose magnetic properties are influenced by the composition and crystallite size, and (iii) SrFe12O19/g-Fe2O3 composites whose magnetic properties are mainly controlled by the ratio of the respective magnetic phases. Our main results concerning the synthesis of these compounds in the form of submicronic particles, their magnetic properties and their heating abilities are summarized, compared and discussed in this paper.
dcterms:title
Search of new core materials for magnetic fluid hyperthermia: Preliminary chemical and physical issues Search of new core materials for magnetic fluid hyperthermia: Preliminary chemical and physical issues
skos:prefLabel
Search of new core materials for magnetic fluid hyperthermia: Preliminary chemical and physical issues Search of new core materials for magnetic fluid hyperthermia: Preliminary chemical and physical issues
skos:notation
RIV/68378271:_____/09:00335836!RIV10-AV0-68378271
n3:aktivita
n15:Z n15:P
n3:aktivity
P(1QS100100553), P(KAN200200651), P(KJB100100701), Z(AV0Z10100521)
n3:cisloPeriodika
1
n3:dodaniDat
n18:2010
n3:domaciTvurceVysledku
n9:5325986 n9:6469264 n9:5337607 n9:6767664 n9:6996914
n3:druhVysledku
n16:J
n3:duvernostUdaju
n14:S
n3:entitaPredkladatele
n13:predkladatel
n3:idSjednocenehoVysledku
340446
n3:idVysledku
RIV/68378271:_____/09:00335836
n3:jazykVysledku
n4:eng
n3:klicovaSlova
magnetic nanoparticles; magnetic fluid hyperthermia; cobalt ferrite; manganese perovskites; Sr-hexaferrite
n3:klicoveSlovo
n7:Sr-hexaferrite n7:cobalt%20ferrite n7:manganese%20perovskites n7:magnetic%20nanoparticles n7:magnetic%20fluid%20hyperthermia
n3:kodStatuVydavatele
GB - Spojené království Velké Británie a Severního Irska
n3:kontrolniKodProRIV
[07AD9C8D1134]
n3:nazevZdroje
Progress in Solid State Chemistry
n3:obor
n11:BM
n3:pocetDomacichTvurcuVysledku
5
n3:pocetTvurcuVysledku
9
n3:projekt
n12:KAN200200651 n12:1QS100100553 n12:KJB100100701
n3:rokUplatneniVysledku
n18:2009
n3:svazekPeriodika
37
n3:tvurceVysledku
Kaman, Ondřej Veverka, Miroslav Vasseur, S. Veverka, Pavel Závěta, Karel Pollert, Emil Duguet, E. Goglio, G. Epherre, R.
n3:wos
000271843700001
n3:zamer
n10:AV0Z10100521
s:issn
0079-6786
s:numberOfPages
14