نتایج جستجو برای: manganese ferrite nanocomposite

تعداد نتایج: 43777  

Journal: :international journal of bio-inorganic hybrid nanomaterials 0

in this work, we investigated synthesis, magnetic properties of silica coated metal ferrite, (cofe2o4)/sio2 and manganese doped cobalt ferrite nanoparticles (mnxco1-xfe2o4 with x= 0.02, 0.04 and 0.06)/sio2 for possible biomedical application. all the ferrites nanoparticles were prepared by co-precipitation method using fecl3.6h2o, cocl2.6h2o and mncl2.2h2o as precursors, and were silica coated ...

Journal: :international journal of bio-inorganic hybrid nanomaterials 0

a feasible and fast method to fabricate hydrogen peroxide sensor was investigated by graphene-manganase nanocomposite carbone paste electrode. in the present work, in first step, the graphene was synthesized by chemical method and in second step, manganese oxide nanoparticle was doped on graphene. graphene-manganase nanocomposite was characterized by ftir and sem. the nanocomposite shows a high...

2016
Carlos Lopez-Abarrategui Viviana Figueroa-Espi Maria B Lugo-Alvarez Caroline D Pereira Hilda Garay João ARG Barbosa Rosana Falcão Linnavel Jiménez-Hernández Osvaldo Estévez-Hernández Edilso Reguera Octavio L Franco Simoni C Dias Anselmo J Otero-Gonzalez

Diseases caused by bacterial and fungal pathogens are among the major health problems in the world. Newer antimicrobial therapies based on novel molecules urgently need to be developed, and this includes the antimicrobial peptides. In spite of the potential of antimicrobial peptides, very few of them were able to be successfully developed into therapeutics. The major problems they present are m...

2009
H. K. D. H. Bhadeshia

There are many steels which are stronger than 2000 MPa, with toughness values exceeding 100 MPa m and which have been in commercial service for many decades. Examples include the marageing alloys and carbide–free bainitic steels. By contrast, welding consumables with a proof strength in excess of 1000 MPa are few and far between. This is because whereas wrought steels can be thermomechanically ...

2017
MUHAMMAD HASSAN SAFDAR HUMNA HASAN MARIAM ANEES ZAHID HUSSAIN

Objective: On account of several complications and adverse effects associated with the use of conventional chemotherapeutic regimen, the advanced drug-targeted therapies have gained the remarkable attention of the researchers due to their fabulous pharmaceutical and therapeutic advantages. The present study was designed with the aim to synthesize manganese ferrite nanoparticles (MnFe2O4 NPs) an...

Journal: :Catalysts 2022

The present research aimed to evaluate the photocatalytic activity of reduced graphene oxide and manganese ferrite nanocomposite supported on eucalyptus wood ash waste (WA) from industrial boilers, for decolorization methylene blue (MB) solutions, using sunlight as an irradiation source. For this, photocatalyst named MnFe2O4-G@WA was synthesized by a solvothermal method characterized analyzes s...

2017
K. Marycz M. Marędziak D. Lewandowski E. Zachanowicz A. Zięcina R. J. Wiglusz R. Pązik

Cobalt manganese ferrite nanoparticles have application potential in the biomedical field, however there is limited information concerning the biological response. The aim of this work was to investigate the cytotoxic potential of cobalt-manganese ferrite nanoparticles in canine mastocytoma tumor cells (C2) and adipose-derived mesenchymal stromal stem cells (ASCs) cultured under a static magnet...

بابک نصر, , جمشید عمیقیان, , مرتضی مظفری, ,

 Phase formation of manganese ferrite prepared by co-precipitation method is studied at different annealing temperatures. It is shown that the spinel phase is formed by quenching only in inert gas. XRD patterns show that the background picks fall in intensity by increasing annealing temperature and the single phase is achieved by magnetic separation.

Journal: :Materials advances 2022

In this study, in situ -grown cobalt ferrite (CoFe 2 O 4 , CF) nanoparticles on waste biomass-derived porous activated carbon (AC) were grown via a facile hydrothermal technique to develop CF/AC nanocomposite.

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