نتایج جستجو برای: magnetite nanoparticle

تعداد نتایج: 35851  

Journal: : 2023

Magnetic nanofluids are an outstanding candidate for biomedicine research. This is because their magnetic properties play a significant role in evaluating the effectiveness of clinical applications biomedicine. Besides, that influenced by many factors, most important which particle size. In this article, we present simulation study to assess effect size on fluids contain magnetite ( Fe 3 O 4 ) ...

2009
I. Kong S. H. Ahmad M. H. Abdullah A. N. Yusoff

Abstract. The magnetic properties of magnetite nanoparticles and magnetite-thermoplastic natural rubber (TPNR) nanocomposites was prepared by melt-blending method has been studied using vibrating sample magnetometer (VSM). The saturation magnetization (MS), remanence (MR), squareness (MR/MS), coercivity (HC) and exchange-bias field (Heb) for magnetite nanoparticles and its nanocomposites increa...

2003
JN XU MJ. ZHANG J. K LOU P. SOMASUNDARAN

Hematite fines were found to form aggregates with magnetite ~des in the same slurry, without the help of any flocculants. Because of this aggregation. fine iron ores containing hematite and -anetile can be successfully concentrated by multi-stage deslimings. ~ that the ore is finely ground and silicate gangues properly ~rsed. The effectiveness of this technique has been tested on a UMIIIIIercia...

Journal: :Cryobiology 2016
Atsuko Kobayashi Harry N Golash Joseph L Kirschvink

An outstanding biophysical puzzle is focused on the apparent ability of weak, extremely low-frequency oscillating magnetic fields to enhance cryopreservation of many biological tissues. A recent theory holds that these weak magnetic fields could be inhibiting ice-crystal nucleation on the nanocrystals of biological magnetite (Fe3O4, an inverse cubic spinel) that are present in many plant and an...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2013
Jens Baumgartner Guillaume Morin Nicolas Menguy Teresa Perez Gonzalez Marc Widdrat Julie Cosmidis Damien Faivre

The iron oxide mineral magnetite (Fe3O4) is produced by various organisms to exploit magnetic and mechanical properties. Magnetotactic bacteria have become one of the best model organisms for studying magnetite biomineralization, as their genomes are sequenced and tools are available for their genetic manipulation. However, the chemical route by which magnetite is formed intracellularly within ...

Journal: :Nanoscale research letters 2016
Ie V Pylypchuk D Kołodyńska M Kozioł P P Gorbyk

The synthesis of the chitosan/magnetite nanocomposites is presented. Composites were prepared by co-precipitation of iron(II) and iron(III) salts by aqueous ammonia in the 0.1 % chitosan solution. It was shown that magnetite synthesis in the chitosan medium does not affect the magnetite crystal structure. The thermal analysis data showed 4.6 % of mass concentration of chitosan in the hybrid chi...

Journal: :Proceedings. Biological sciences 2009
Wolfgang Wiltschko Ursula Munro Hugh Ford Roswitha Wiltschko

Migratory silvereyes treated with a strong magnetic pulse shift their headings by approximately 90 degrees , indicating an involvement of magnetite-based receptors in the orientation process. Structures containing superparamagnetic magnetite have been described in the inner skin at the edges of the upper beak of birds, while single-domain magnetite particles are indicated in the nasal cavity. T...

2016
Ayana Yamagishi Masayoshi Tanaka Jos J. M. Lenders Jarla Thiesbrummel Nico A. J. M. Sommerdijk Tadashi Matsunaga Atsushi Arakaki

Living organisms can produce inorganic materials with unique structure and properties. The biomineralization process is of great interest as it forms a source of inspiration for the development of methods for production of diverse inorganic materials under mild conditions. Nonetheless, regulation of biomineralization is still a challenging task. Magnetotactic bacteria produce chains of a prokar...

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