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Synthesis process, size and composition effects of spherical Fe3O4 and FeO@Fe3O4 core/shell nanoparticles

Synthesis process, size and composition effects of spherical Fe3O4 and FeO@Fe3O4 core/shell nanoparticles

Pablo Tancredi, Patricia C. Rivas Rojas, Oscar Moscoso-Londoño, Ulrike Wolff, Volker Neu, Christine Damm, Bernd Rellinghaus, Marcelo Knobel and Leandro M. Socolovsky

ARTIGO

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Agradecimentos: This work benefited from SasView software, originally developed by the DANSE project under NSF award DMR-0520547. Authors would like to acknowledge CONICET (Argentina) for financial support, CNPEM (Brazil) for the use of synchrotron light (SAXS line, LNLS) and TEM facilities... Ver mais
Abstract: In this work, we investigate the size, composition and magnetic behavior of a series of iron oxide nanoparticles prepared by means of high temperature decomposition of an iron oleate precursor. Different synthesis conditions, such as gas atmosphere, precursor ratio and heating rate were... Ver mais

FUNDAÇÃO DE AMPARO À PESQUISA DO ESTADO DE SÃO PAULO - FAPESP

2014/26672-8

Fechado

Synthesis process, size and composition effects of spherical Fe3O4 and FeO@Fe3O4 core/shell nanoparticles

Pablo Tancredi, Patricia C. Rivas Rojas, Oscar Moscoso-Londoño, Ulrike Wolff, Volker Neu, Christine Damm, Bernd Rellinghaus, Marcelo Knobel and Leandro M. Socolovsky

										

Synthesis process, size and composition effects of spherical Fe3O4 and FeO@Fe3O4 core/shell nanoparticles

Pablo Tancredi, Patricia C. Rivas Rojas, Oscar Moscoso-Londoño, Ulrike Wolff, Volker Neu, Christine Damm, Bernd Rellinghaus, Marcelo Knobel and Leandro M. Socolovsky

    Fontes

    New journal of chemistry (Fonte avulsa)