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  4. Nanohybrids of magnetic iron-oxide particles in hydrophobic organoclays for oil recovery
 
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Nanohybrids of magnetic iron-oxide particles in hydrophobic organoclays for oil recovery

Journal
ACS Applied Materials and Interfaces
Journal Volume
2
Journal Issue
5
Pages
1349-1354
Date Issued
2010
Author(s)
Hsu, R.-S.
Chang, W.-H.
Lin, J.-J.
JIANG-JEN LIN  
DOI
10.1021/am100019t
URI
http://www.scopus.com/inward/record.url?eid=2-s2.0-77954967025&partnerID=MN8TOARS
http://scholars.lib.ntu.edu.tw/handle/123456789/355854
Abstract
Nanohybrids with magnetic iron-oxide nanoparticles (FeNPs) embedded in the multilayered silicate clay were synthesized by in situ Fe(2+)/Fe(3+) coprecipitation. The natural clay, sodium montmorillonite (Na(+)-MMT), was first modified with hydrophobic poly(oxypropylene)amine salts (POP at 2000 and 4000 g/mol M(w)). The two POP-intercalated organoclays, with a silicate interlayer expansion from 1.2 to 5.2 and 9.2 nm, respectively, are suitable for embedding FeNPs. The presence of POP organics in layered structure created the space for intercalating with FeNPs of 2-4 nm in diameter, observed by transmission electronic microscope. The synthesized nanohybrids of POP4000/MMT-FeNP was composed of 17% iron oxide and 51 wt % POP within the silicate basal spacing of 5.0 nm. In contrast, the lower molecular weight of POP2000 intercalated MMT failed to encapsulate FeNPs in a significant amount, but resulting a "crowding-out effect" that caused the silicate interlayer space to shrink from 5.2 to 1.8 nm because of the replacement of the POP salt by Fe(2+)/Fe(3+) ions. The synthesis required the use of high molecular weight POP4000 and low temperatures (<4 degrees C) for a better dispersion in the reaction medium. The presence of POP in the layered silicate facilitated a homogeneous POP/MMT in water, associating with Fe(2+)/Fe(3+) ions and spatially accommodating for the subsequently generated FeNPs. The synthesized nanostructure consisting of POP and FeNP could be used as a pollutant remedy because of its ability to adsorbing crude oil and it is maneuverable under an applied magnetism.
SDGs

[SDGs]SDG6

Type
journal article

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