نتایج جستجو برای: mn oxide

تعداد نتایج: 214025  

Journal: :Geology 2023

Abstract Manganese (Mn) dendrites are a common type of mineral dendrite that typically forms two-dimensional structures on rock surfaces. Three-dimensional (3-D) Mn in rocks have rarely been reported, and so their growth implications largely escaped attention. Here, we combined high-resolution X-ray electron-based data with numerical modeling to give the first detailed description natural 3-D (...

Journal: :APL Materials 2023

Layered oxides have been intensively studied due to their high degree of freedom in designing various electromagnetic properties and functionalities. While Bi-based layered supercell (LSC) compounds [BinOn+δ]-[MO2] (M = Mn, Mn/Al, Mn/Fe, or Mn/Ni; n 2, 3) are a group prospective candidates, all the reported insulators. Here, we report on synthesis two novel metallic LSC [BinOn+δ]-[RhO2] (n by p...

Manganese oxide nanoparticles (Mn3O4-NPs) were prepared using precipitation method. The prepared nanoparticles were characterized by a number of techniques, including X-ray diffraction (XRD) analysis, scanning electron microscopy (SEM), transmission electron microscopy (TEM) and Fourier transforms infra red (FT-IR) spectroscopy. The XRD pattern showed that the structure of...

Journal: :iranian chemical communication 0
bahram hosseini nia education azam anaraki firooz chemistry department, faculty of sciences, shahid rajaee teacher training university masoumeh ghalkhani chemistry department, faculty of science, shahid rajaee teacher training university javad beheshtian chemistry department, faculty of science, shahid rajaee teacher training university

in this study, undoped zno and doped with fe and mn nanostructures were synthesized by hydrothermal method. the morphology of nanostructures was characterized by scanning electron microscope. the electrochemical response of the carbon paste electrode modified with nanoparticles of zno and also zno doped with fe and mn toward levodopa (l-dopa) was studied. studies of cyclic voltammetry using pro...

Journal: :Environmental science & technology 2010
Sanjai J Parikh Brandon J Lafferty Terry G Meade Donald L Sparks

The oxidation of arsenite (As(III)) via Mn-oxides is an important process for natural arsenic (As) cycling and for developing in situ strategies for remediation of As-contaminated waters. In this study, the influence of goethite (alpha-FeOOH), phosphate, and bacteria/biopolymer coatings on the initial As(III) oxidation kinetics by a hydrous Mn-oxide (delta-MnO(2)) is examined via both batch exp...

Journal: :Toxicological sciences : an official journal of the Society of Toxicology 2007
Juan Pablo Prestifilippo Javier Fernández-Solari Claudia Mohn Andrea De Laurentiis Samuel M McCann Wl Dees Valeria Rettori

Recently studies have demonstrated that low doses of (Mn(+2)) in the form of manganese chloride can stimulate specific puberty-related hormones and advance signs of pubertal development in immature female and male rats. In the present study, we used an in vitro system to evaluate the ability of 0, 50, 250, and 500 microM doses of Mn(+2) to stimulate luteinizing hormone-releasing hormone (LHRH) ...

2002
Susan Erin O’Reilly Michael F. Hochella David F. Cox Matthew J. Eick J. Donald Rimstidt Lucian W. Zelazny

Lead sorption efficiencies (sorption per surface area) were measured for a number of natural and synthetic Mn and Fe-oxides using a flow through reactor. The Mn-oxide phases examined included synthetic birnessite, natural and synthetic cryptomelane, and natural and synthetic pyrolusite; the Fe-oxides studied were synthetic akaganeite, synthetic ferrihydrite, natural and synthetic goethite, and ...

2017
P. Prudhvi Raj

Nanoparticles of un-doped, 5%, 10%, 15% Mn doped TiO2 were prepared by the sol-gel technique by adding different proportions of Manganese to the Titanium dioxide and characterized using XRD and SEM. This increase in doping proportion of Mn in the oxide material reduced the band gap to a larger extent, so this material is activated under visible light. As the doping level of Manganese increased,...

2011
Marilyn M. Olmstead David W. Boyce Lauren E. Bria

The title compound, [Mn(2)O(2)(C(10)H(24)N(4))(2)](C(24)H(20)B)(2)Cl·2CH(3)CN, is a mixed-valent Mn(III)/Mn(IV) oxide-bridged mangan-ese dimer with one chloride and two tetra-phenyl-borate counter-anions. There are two non-coordinated mol-ecules of acetonitrile in the formula unit. A center of inversion is present between the two metal atoms, and, consequently, there is no distinction between M...

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