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2018
DOI: 10.1016/j.matchemphys.2018.08.042
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Synthesis and characterization of graphene modified by iron oxide nanoparticles

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Cited by 39 publications
(23 citation statements)
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“…This process was performed under relatively mild conditions (90 C), which gave rise to the formation of C-O-Fe covalent bonding. 50 On the other hand, it was demonstrated experimentally 51 and theoretically 52 that magnetic nanoparticles established a charge transfer complex with graphene, which likely is even more functional when both components bond as intimately as in our case.…”
Section: Acid Red 1 Degradation By Fenton Process Over 3d Rgo@fe 3 O mentioning
confidence: 54%
“…This process was performed under relatively mild conditions (90 C), which gave rise to the formation of C-O-Fe covalent bonding. 50 On the other hand, it was demonstrated experimentally 51 and theoretically 52 that magnetic nanoparticles established a charge transfer complex with graphene, which likely is even more functional when both components bond as intimately as in our case.…”
Section: Acid Red 1 Degradation By Fenton Process Over 3d Rgo@fe 3 O mentioning
confidence: 54%
“…This could be due to the effects of surface contribution and non-stoichiometry in the prepared sample. 57 The surface contribution could be mainly from the pinning of the surface spins at the particle interface. However, this value is very close to the most of the reported values of Fe 3 O 4 nanoparticles.…”
Section: Characterization Of the Prepared Materialsmentioning
confidence: 99%
“…С момента открытия нового вида углеродных наноматериалов -графена [19], восстановленный оксид графена (GrO) рассматривался как перспективный кандидат для самых разнообразных применений [20], а также как важная составляющая для создания нетоксичных материалов для биомедицины [21]. Исследования биомедицинских применений графена расширяется, но для использования в биомедицине необходимо решить основную проблему -проблему токсичности графена и оксида графена для живых организмов.…”
Section: Introductionunclassified
“…Поэтому, для изучения МНК GrO/магнетик используются различные методики (см. например [21,[26][27][28][29][30]), в том числе мёссбауэровская спектроскопия [20,30,33]. Уникальность мёссбауэровской спектроскопии заключается в возможности получения важнейшей информации оксидов железа, определении наличия и процентного содержания магнетита (Fe 3 O 4 ), гематита (α-Fe 2 O 3 ), маггемита (γ-Fe 2 O 3 ), вюстита и других оксидов железа, а также о состоянии ионов железа в исследуемом материале [37,38] [39] и модифицированным в работе [40].…”
Section: Introductionunclassified