نتایج جستجو برای: iron iii

تعداد نتایج: 393674  

2013
Han-Chun Wu R. Ramos R. G. S. Sofin Zhi-Min Liao M. Abid I. V. Shvets

2014
Dora I.A. Pereira Sylvaine F.A. Bruggraber Nuno Faria Lynsey K. Poots Mani A. Tagmount Mohamad F. Aslam David M. Frazer Chris D. Vulpe Gregory J. Anderson Jonathan J. Powell

UNLABELLED Iron deficiency is the most common nutritional disorder worldwide with substantial impact on health and economy. Current treatments predominantly rely on soluble iron which adversely affects the gastrointestinal tract. We have developed organic acid-modified Fe(III) oxo-hydroxide nanomaterials, here termed nano Fe(III), as alternative safe iron delivery agents. Nano Fe(III) absorptio...

Journal: :Environmental science & technology 2016
Daniel A Thomas Matthew M Coggon Hanna Lignell Katherine A Schilling Xuan Zhang Rebecca H Schwantes Richard C Flagan John H Seinfeld J L Beauchamp

The complexation of iron(III) with oxalic acid in aqueous solution yields a strongly absorbing chromophore that undergoes efficient photodissociation to give iron(II) and the carbon dioxide anion radical. Importantly, iron(III) oxalate complexes absorb near-UV radiation (λ > 350 nm), providing a potentially powerful source of oxidants in aqueous tropospheric chemistry. Although this photochemic...

Journal: :Organic letters 2015
Daugirdas T Racys Catherine E Warrilow Sally L Pimlott Andrew Sutherland

An iron(III)-catalyzed method for the rapid and highly regioselective iodination of arenes has been developed. Use of the powerful Lewis acid, iron(III) triflimide, generated in situ from iron(III) chloride and a readily available triflimide-based ionic liquid allowed activation of N-iodosuccinimide (NIS) and efficient iodination under mild conditions of a wide range of substrates including bio...

Journal: :Dalton transactions 2005
Purificación Sánchez Natividad Gálvez Enrique Colacio Elena Miñones José M Domínguez-Vera

It has been traditionally considered that catechols release iron from ferritin by reduction to iron(II), which diffuses through the ferritin channels into the intracellular milieu where it participates in the Fenton reaction, producing highly toxic hydroxyl radicals. However, in the present work we have proved that the mechanism of the release of iron from ferritin by catechol does not take pla...

Journal: :Archives of histology and cytology 2008
Reiko Meguro Yoshiya Asano Saori Odagiri Chengtai Li Kazuhiko Shoumura

Iron in the brain is utilized for cellular respiration, neurotransmitter synthesis/degradation, and myelin formation. Iron, especially its ferrous form, also has the potential for catalyzing the Fenton reaction to generate highly cytotoxic hydroxyl radicals. The amount of iron in the brain must therefore be strictly controlled. In this study, we focused on the cellular and subcellular localizat...

2004
Jonathan W. Roller

Arsenic sorbs strongly to the surfaces of Fe(III) (hydr)oxides. Under aerobic conditions, oxygen acts as the terminal electron acceptor in microbial respiration and Fe(III) (hydr)oxides are highly insoluble, thus arsenic remains associated with Fe(III) (hydr)oxide phases. However, under anaerobic conditions Fe(III)-reducing microorganisms can couple the reduction of solid phase Fe(III) (hydr)ox...

Journal: :Applied and environmental microbiology 2012
Maren Emmerich Ankita Bhansali Tina Lösekann-Behrens Christian Schröder Andreas Kappler Sebastian Behrens

The extreme osmotic conditions prevailing in hypersaline environments result in decreasing metabolic diversity with increasing salinity. Various microbial metabolisms have been shown to occur even at high salinity, including photosynthesis as well as sulfate and nitrate reduction. However, information about anaerobic microbial iron metabolism in hypersaline environments is scarce. We studied th...

Journal: :Journal of the American Chemical Society 2003
Sara E Bari Marcelo A Martí Valentín T Amorebieta Darío A Estrin Fabio Doctorovich

Iron(II) porphyrin nitrosyl complexes are obtained in high yields from the reaction of iron(III) porphyrins with the nitroxyl donors sodium trioxodinitrate and toluensulfohydroxamic acid. The reaction was found to proceed both in organic solvents and in aqueous media from iron(III) (meso-tetraphenyl) porphyrinate ([FeIII(TPP)]+) and iron(III) meso-tetrakis (4-sulfonatophenyl) porphyrinate ([FeI...

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