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Microfluidic Continuous Approaches to Produce Magnetic Nanoparticles with Homogeneous Size Distribution
Larrea, A.
(Universidad de Zaragoza)
;
Sebastian, V.
(Universidad de Zaragoza)
;
Arruebo, M.
(Universidad de Zaragoza)
;
Santamaria, J.
(Universidad de Zaragoza)
Resumen:
We present a gas-liquid microfluidic system as a reactor to obtain magnetite nanoparticles with an excellent degree of control regarding their crystalline phase, shape and size. Several types of microflow approaches were selected to prevent nanomaterial aggregation and to promote homogenous size distribution. The selected reactor consists of a mixer stage aided by ultrasound waves and a reaction stage using a N2-liquid segmented flow to prevent magnetite oxidation to non-magnetic phases. A milli-fluidic reactor was developed to increase the production rate where a magnetite throughput close to 450 mg/h in a continuous fashion was obtained.
Idioma:
Inglés
DOI:
10.1999/1307-6892/10001650
Año:
2015
Publicado en:
International Journal of Materials and Metallurgical Engineering
9, 7 (2015), 593-599
ISSN:
Financiación:
info:eu-repo/grantAgreement/EC/FP7/321642/EU/Development of a microfluidic platform to produce nanomaterials and assessment on new nanotechnology applications/PLATFORM2NANO
Financiación:
info:eu-repo/grantAgreement/EC/FP7/614715/EU/A Photo-triggered On-demand Drug Delivery System for Chronic Pain/NANOHEDONISM
Tipo y forma:
Article (Published version)
Área (Departamento):
Área Ingeniería Química
(
Dpto. Ing.Quím.Tecnol.Med.Amb.
)
Exportado de SIDERAL (2019-05-29-11:43:31)
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Notice créée le 2018-02-22, modifiée le 2019-05-29
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