Synthesis of hierarchical iron oxide nanostructures from primary nanoparticles and their morphology control via hydrolysis

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초록

Flower-like hierarchical iron oxide structures have attracted much research attention due to their large surface area, easy separation and re-use, and ability to adsorb toxic ions. However, harsh synthetic conditions such as the use of surfactants and autoclave reactors limit their broader application. Moreover, control over the porosity and morphology of such structures has not yet been investigated. Facile preparation of hierarchical Fe-glycolate particles is possible using pre-prepared (Fe, Ti) oxide nanoparticles without the use of surfactants or autoclave reactors as they act as both precursors and intermediate seeds for self-assembly. The porosity and morphology of the particles are controlled via variable rates of hydrolysis. Replacement of bulky glycolates with smaller water molecules induces surface area and porosity changes in the hierarchical structures. Hierarchical magnetite particles are obtained from the Fe-glycolate and hydrolyzed particles after reductive annealing, and exhibit different surface areas, porosities and magnetic properties. Porosity-controlled magnetites from hydrolyzed particles also show greater adsorption for removing toxic arsenate ions in water.

키워드

DEPENDENT MAGNETIC-PROPERTIESFLOWER-LIKE FE3O4WATER-PURIFICATIONGROWTH-MECHANISMREMOVALALPHA-FE2O3ADSORPTIONNANOSHEETSARSENATE
제목
Synthesis of hierarchical iron oxide nanostructures from primary nanoparticles and their morphology control via hydrolysis
저자
Lim, JoohyunSim, KyunjongLee, Jin-Kyu
DOI
10.1039/c5ce02580j
발행일
2016
유형
Article
저널명
CrystEngComm
18
12
페이지
2155 ~ 2162