نتایج جستجو برای: mesoporous magnetite nanoparticles

تعداد نتایج: 119030  

Journal: :avicenna journal of medical biotechnology 0

background: magnetic nanoparticles in a variable magnetic field are able to produce heat. this heat (42-45°c) has more selective effect on fast dividing cancer cells than normal tissues. methods: in this work magnetite nanoparticles have been prepared via co-precipitation and phase identification was performed by powder x-ray diffraction (xrd). magnetic parameters of the prepared nanoparticles ...

2016
P. J. Vikesland R. L. Rebodos J. Y. Bottero

Magnetite nanoparticles are redox active constituents of subsurface and corrosive environments. In this study, we characterized the aggregation and sedimentation behavior of well characterized magnetite nanoparticle clusters using dynamic light scattering (DLS), UV-vis-NIR spectroscopy, and small angle X-ray scattering (SAXS). Both unfunctionalized (NaOH-magnetite) and tetramethylammonium hydro...

2013
Damon Allen Smith Yu A. Barnakov B L. Scott S A. White Kevin L. Stokes

Journal: :Nanobiotechnology : the journal at the intersection of nanotechnology, molecular biology, and biomedical sciences 2007
Jie Lu Monty Liong Sean Sherman Tian Xia Michael Kovochich Andre E Nel Jeffrey I Zink Fuyuhiko Tamanoi

Biocompatible mesoporous silica nanoparticles, containing the fluorescence dye fluorescein isothiocyanate (FITC), provide a promising system to deliver hydrophobic anticancer drugs to cancer cells. In this study, we investigated the mechanism of uptake of fluorescent mesoporous silica nanoparticles (FMSN) by cancer cells. Incubation with FMSN at different temperatures showed that the uptake was...

2016
Rurik Farias-Mancilla José T. Elizalde-Galindo Enrique Vigueras-Santiago Claudia A. Hernández-Escobar Alejandro Vega-Rios E. Armando Zaragoza-Contreras

A conducting-electroactive polyaniline/magnetite (PAni/Fe304) nanocomposite was synthesized using anilinium dodecylbenzene sulfonate (S1) as a reactive surfactant. First, S1 allowed magnetite dispersion in the aqueous phase and second, S1 performed as the monomer of polyaniline emeraldine base salt. Electron microscopy suggested core-shell morphology based on S1 amphiphilic character; that is, ...

Journal: :Dalton transactions 2012
Yulin Huang Fei Deng Chaoying Ni Jingguang G Chen Dionisios G Vlachos

By controlling the interaction between cationic surfactant micelles and ammonium metatungstate during the formation of mesoporous silica structure, highly dispersed tungsten carbide (WC) nanoparticles of 2.0 nm in diameter on mesoporous silica nanospheres were synthesized at lower concentration of ammonium metatungstate. With additional ammonium metatungstate, a novel mesoporous silica nanobamb...

Journal: :Journal of environmental management 2010
Saidur Rahman Chowdhury Ernest K Yanful

Adsorption of arsenic and chromium by mixed magnetite and maghemite nanoparticles from aqueous solution is a promising technology. In the present batch experimental study, a commercially grade nano-size 'magnetite', later identified in laboratory characterization to be mixed magnetite-maghemite nanoparticles, was used in the uptake of arsenic and chromium from different water samples. The inten...

Journal: :international journal of nanoscience and nanotechnology 2015
m.m.a. nikje l. sarchami l. rahmani

in this report, magnetic iron oxide nanoparticles were synthesized via coprecipitation of fe2+ and fe3+ with ammonium hydroxide, and the surface of synthesized nanoparticles was organically functionalized by commercially available amine coupling agent namely, 3-aminopropyl trimethoxysilane (apts) by using well-known sol–gel method. further reaction of the synthesized fe3o4@apts core-shell magne...

Journal: :Nanoscale 2012
Amirali Popat Jian Liu Qiuhong Hu Michael Kennedy Brenton Peters Gao Qing Max Lu Shi Zhang Qiao

In this proof-of-concept study, an agricultural biocide (imidacloprid) was effectively loaded into the mesoporous silica nanoparticles (MSNs) with different pore sizes, morphologies and mesoporous structures for termite control. This resulted in nanoparticles with a large surface area, tunable pore diameter and small particle size, which are ideal carriers for adsorption and controlled release ...

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